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China wholesaler CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane

Product Description

Product Description

 

PRODUCT DESCRIPTIONS
Super-above Truck-mounted crane 
A truck-mounted crane is grouped together as a means of transport. By the boom, lifting torque, frame, legs and other
parts. Crane left and right operation can be both positive and negative 360-degree rotation, can also be full rotation.
Compared special crane trucks with crane, with a high speed, climbing ability characteristics. Enables fast movements,
efficiency, energy-saving.With a flexible, easy to operate, efficient, safe, and reliable.
A truck-mounted crane is grouped together as a means of transport. By the boom, lifting torque, frame, legs and other parts.
Crane left and right operation can be both positive and negative 360-degree rotation, can also be full rotation. Compared
special crane trucks with crane, with a high speed, climbing ability characteristics. Enables fast movements, efficiency,
energy-saving.With a flexible, easy to operate, efficient, safe, and reliable.

TECHNICAL PARAMETERS

Item Unit References
Max Lifting Moment t*m 28
Max Lifting Capacity kg 16000
Boom length m 4.81~11.85
Max Lifting Height m 13.2
Derick range ° 0~75°
Outrigger span mm 2280~5580
Size(length×width×height) mm 5140×2430×3260

1.Throttle Control System

        Changing the form of the previous manipulation and throttle operation individually, the Realization of the bilateral
handle synchronous and driving throttle acceleration and deceleration automatically, due to the speed change steady,
it can easily carry out the lifting work.

2.End position automatic hook device

        Maximum savings in preparation time before and after the operation, to ensure that the customer’s vehicle could be in a
driving state in the shortest time and prevent crane damage accident caused by hoist swing to enhance the safety of driving.

3. Hoisting overwinter device

        If a user is negligent or unfamiliar with the operation of lifting hooks, the hoisting overwinter device will stop hook-raise
in time, to prevent the safety of personnel and property caused by the fracture of wire rope.

4.Slewing locking device

        Slewing locking device can ensure that the lifting arm does not sway because of the centrifugal force during the driving
and steering process of the vehicle,to avoid all kinds of accidents caused by swaying.

5.Torque limiter

        It can select torque limit overload protection device to prevent users because of  negligence or unfamiliar with the lifting
operation principle of overload operation, thereby causing the vehicle rollover and crane damage accidents.

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After-sales Service: Available-Spare Parts,Job Site Training
Warranty: 1year
Certification: GS, RoHS, CE, ISO9001
Customization:
Available

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

How does the injection molding process contribute to the production of high-precision parts?

The injection molding process is widely recognized for its ability to produce high-precision parts with consistent quality. Several factors contribute to the precision achieved through injection molding:

1. Tooling and Mold Design:

The design and construction of the injection mold play a crucial role in achieving high precision. The mold is typically made with precision machining techniques, ensuring accurate dimensions and tight tolerances. The mold design considers factors such as part shrinkage, cooling channels, gate location, and ejection mechanisms, all of which contribute to dimensional accuracy and part stability during the molding process.

2. Material Control:

Injection molding allows for precise control over the material used in the process. The molten plastic material is carefully measured and controlled, ensuring consistent material properties and reducing variations in the molded parts. This control over material parameters, such as melt temperature, viscosity, and fill rate, contributes to the production of high-precision parts with consistent dimensions and mechanical properties.

3. Injection Process Control:

The injection molding process involves injecting molten plastic into the mold cavity under high pressure. Advanced injection molding machines are equipped with precise control systems that regulate the injection speed, pressure, and time. These control systems ensure accurate and repeatable filling of the mold, minimizing variations in part dimensions and surface finish. The ability to finely tune and control these parameters contributes to the production of high-precision parts.

4. Cooling and Solidification:

Proper cooling and solidification of the injected plastic material are critical for achieving high precision. The cooling process is carefully controlled to ensure uniform cooling throughout the part and to minimize warping or distortion. Efficient cooling systems in the mold, such as cooling channels or conformal cooling, help maintain consistent temperatures and solidification rates, resulting in precise part dimensions and reduced internal stresses.

5. Automation and Robotics:

The use of automation and robotics in injection molding enhances precision and repeatability. Automated systems ensure consistent and precise handling of molds, inserts, and finished parts, reducing human errors and variations. Robots can perform tasks such as part removal, inspection, and assembly with high accuracy, contributing to the overall precision of the production process.

6. Process Monitoring and Quality Control:

Injection molding processes often incorporate advanced monitoring and quality control systems. These systems continuously monitor and analyze key process parameters, such as temperature, pressure, and cycle time, to detect any variations or deviations. Real-time feedback from these systems allows for adjustments and corrective actions, ensuring that the production remains within the desired tolerances and quality standards.

7. Post-Processing and Finishing:

After the injection molding process, post-processing and finishing techniques, such as trimming, deburring, and surface treatments, can further enhance the precision and aesthetics of the parts. These processes help remove any imperfections or excess material, ensuring that the final parts meet the specified dimensional and cosmetic requirements.

Collectively, the combination of precise tooling and mold design, material control, injection process control, cooling and solidification techniques, automation and robotics, process monitoring, and post-processing contribute to the production of high-precision parts through the injection molding process. The ability to consistently achieve tight tolerances, accurate dimensions, and excellent surface finish makes injection molding a preferred choice for applications that demand high precision.

How do innovations and advancements in injection molding technology influence part design and production?

Innovations and advancements in injection molding technology have a significant influence on part design and production. These advancements introduce new capabilities, enhance process efficiency, improve part quality, and expand the range of applications for injection molded parts. Here’s a detailed explanation of how innovations and advancements in injection molding technology influence part design and production:

Design Freedom:

Advancements in injection molding technology have expanded the design freedom for part designers. With the introduction of advanced software tools, such as computer-aided design (CAD) and simulation software, designers can create complex geometries, intricate features, and highly optimized designs. The use of 3D modeling and simulation allows for the identification and resolution of potential design issues before manufacturing. This design freedom enables the production of innovative and highly functional parts that were previously challenging or impossible to manufacture using conventional techniques.

Improved Precision and Accuracy:

Innovations in injection molding technology have led to improved precision and accuracy in part production. High-precision molds, advanced control systems, and closed-loop feedback mechanisms ensure precise control over the molding process variables, such as temperature, pressure, and cooling. This level of control results in parts with tight tolerances, consistent dimensions, and improved surface finishes. Enhanced precision and accuracy enable the production of parts that meet strict quality requirements, fit seamlessly with other components, and perform reliably in their intended applications.

Material Advancements:

The development of new materials and material combinations specifically formulated for injection molding has expanded the range of properties available to part designers. Innovations in materials include high-performance engineering thermoplastics, bio-based polymers, reinforced composites, and specialty materials with unique properties. These advancements allow for the production of parts with enhanced mechanical strength, improved chemical resistance, superior heat resistance, and customized performance characteristics. Material advancements in injection molding technology enable the creation of parts that can withstand demanding operating conditions and meet the specific requirements of various industries.

Process Efficiency:

Innovations in injection molding technology have introduced process optimizations that improve efficiency and productivity. Advanced automation, robotics, and real-time monitoring systems enable faster cycle times, reduced scrap rates, and increased production throughput. Additionally, innovations like multi-cavity molds, hot-runner systems, and micro-injection molding techniques improve material utilization and reduce production costs. Increased process efficiency allows for the economical production of high-quality parts in larger quantities, meeting the demands of industries that require high-volume production.

Overmolding and Multi-Material Molding:

Advancements in injection molding technology have enabled the integration of multiple materials or components into a single part through overmolding or multi-material molding processes. Overmolding allows for the encapsulation of inserts, such as metal components or electronics, with a thermoplastic material in a single molding cycle. This enables the creation of parts with improved functionality, enhanced aesthetics, and simplified assembly. Multi-material molding techniques, such as co-injection molding or sequential injection molding, enable the production of parts with multiple colors, varying material properties, or complex material combinations. These capabilities expand the design possibilities and allow for the creation of innovative parts with unique features and performance characteristics.

Additive Manufacturing Integration:

The integration of additive manufacturing, commonly known as 3D printing, with injection molding technology has opened up new possibilities for part design and production. Additive manufacturing can be used to create complex mold geometries, conformal cooling channels, or custom inserts, which enhance part quality, reduce cycle times, and improve part performance. By combining additive manufacturing and injection molding, designers can explore new design concepts, produce rapid prototypes, and efficiently manufacture customized or low-volume production runs.

Sustainability and Eco-Friendly Solutions:

Advancements in injection molding technology have also focused on sustainability and eco-friendly solutions. This includes the development of biodegradable and compostable materials, recycling technologies for post-consumer and post-industrial waste, and energy-efficient molding processes. These advancements enable the production of environmentally friendly parts that contribute to reducing the carbon footprint and meeting sustainability goals.

Overall, innovations and advancements in injection molding technology have revolutionized part design and production. They have expanded design possibilities, improved precision and accuracy, introduced new materials, enhanced process efficiency, enabled overmolding and multi-material molding, integrated additive manufacturing, and promoted sustainability. These advancements empower part designers and manufacturers to create highly functional, complex, and customized parts that meet the demands of various industries and contribute to overall process efficiency and sustainability.

Are there different types of injection molded parts, such as automotive components or medical devices?

Yes, there are various types of injection molded parts that are specifically designed for different industries and applications. Injection molding is a versatile manufacturing process capable of producing complex and precise parts with high efficiency and repeatability. Here are some examples of different types of injection molded parts:

1. Automotive Components:

Injection molding plays a critical role in the automotive industry, where it is used to manufacture a wide range of components. Some common injection molded automotive parts include:

  • Interior components: Dashboard panels, door handles, trim pieces, instrument clusters, and center consoles.
  • Exterior components: Bumpers, grilles, body panels, mirror housings, and wheel covers.
  • Under-the-hood components: Engine covers, air intake manifolds, cooling system parts, and battery housings.
  • Electrical components: Connectors, switches, sensor housings, and wiring harnesses.
  • Seating components: Seat frames, headrests, armrests, and seatbelt components.

2. Medical Devices:

The medical industry relies on injection molding for the production of a wide range of medical devices and components. These parts often require high precision, biocompatibility, and sterilizability. Examples of injection molded medical devices include:

  • Syringes and injection pens
  • Implantable devices: Catheters, pacemaker components, orthopedic implants, and surgical instruments.
  • Diagnostic equipment: Test tubes, specimen containers, and laboratory consumables.
  • Disposable medical products: IV components, respiratory masks, blood collection tubes, and wound care products.

3. Consumer Products:

Injection molding is widely used in the production of consumer products due to its ability to mass-produce parts with high efficiency. Examples of injection molded consumer products include:

  • Household appliances: Television and audio equipment components, refrigerator parts, and vacuum cleaner components.
  • Electronics: Mobile phone cases, computer keyboard and mouse, camera components, and power adapters.
  • Toys and games: Action figures, building blocks, puzzles, and board game components.
  • Personal care products: Toothbrushes, razor handles, cosmetic containers, and hairdryer components.
  • Home improvement products: Light switch covers, door handles, power tool housings, and storage containers.

4. Packaging:

Injection molding is widely used in the packaging industry to produce a wide variety of plastic containers, caps, closures, and packaging components. Some examples include:

  • Bottles and containers for food, beverages, personal care products, and household chemicals.
  • Caps and closures for bottles and jars.
  • Thin-walled packaging for food products such as trays, cups, and lids.
  • Blister packs and clamshell packaging for retail products.
  • Packaging inserts and protective foam components.

5. Electronics and Electrical Components:

Injection molding is widely used in the electronics industry for the production of various components and enclosures. Examples include:

  • Connectors and housings for electrical and electronic devices.
  • Switches, buttons, and control panels.
  • PCB (Printed Circuit Board) components and enclosures.
  • LED (Light-Emitting Diode) components and light fixtures.
  • Power adapters and chargers.

These are just a few examples of the different types of injection molded parts. The versatility of injection molding allows for the production of parts in various industries, ranging from automotive and medical to consumer products, packaging, electronics, and more. The specific design requirements and performance characteristics of each part determine the choice of materials, tooling, and manufacturing processes for injection molding.

China wholesaler CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane  China wholesaler CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane
editor by Dream 2024-05-03

China manufacturer Hydraulic Remote Control Telescopic 3t Cranes Knuckle Boom Crane Spider

Product Description

Product Description

NUS 3.0A miniature crawler crane, powered by Yangma diesel engine, is A fully proportional intelligent spider crane with remote control. The power and hydraulic system are all made of original parts from Japan, making the power output efficient. CHINAMFG proportional valve is adopted in the system, can according to actual needs, to realize the stepless speed regulating, leg have a key leveling function, eliminating the tedious leg leveling operation, work more efficient, hanging arm, leg and walking to realize self-locking interlock, and install a torque control, makes the equipment operation more secure, especially equipped with step pioneering double speed winding, fast speed, high efficiency.
 

 

Detailed Photos

Adopt double speed winch; Single rate, hook with double speed, speed is 24m/min and 48m/min, winch drum capacity hit 100 meters, especially suitable for high-rise buildings of the object transport.

The lifting arm adopts double oil cylinder, unique design of 5 pieces arm, long extension, short contraction. Under the same lifting weight, the crane volume is smaller (the length of spider crane is 2.9 meters), and it can take the elevator with a load of 3 tons to go upstairs, and it can make the boom to a certain extent of load expansion.

Sensor of outrigger on the ground Each leg is equipped with grounding sensor, when the leg off the ground danger, the machine alarm, stop working.Ensure that the machine will not overturn. The crane arm is equipped with moment limiter, each length shows the corresponding limit of load, to ensure that the crane works under the safe lifting weight, and with the moment limiter together to form a double insurance, It can prevent the rollover accident and prevent overload and damage to the boom.

Interlock system After the lifting arm is reset, the supporting leg and travel can be operated to protect the safety of the crane.

380V electric power and gasoline engine (diesel engine) dual power. In places where the engine cannot be used, it can be dragged by wire for operation (especially in areas where gasoline and diesel are strictly controlled), and it can also be equipped with battery pure electric spider crane.

The outrigger is fixed from multiple angles, and the outrigger can be adjusted and fixed according to the construction environment in the face of different narrow working environment. Legs can be operated independently according to the surrounding environment, or 4 legs can be controlled by remote control at the same time to achieve one-button leveling. Beginners can also operate legs easily, so that the car body is always in a level state.

 

Product Parameters

Model NU3.0
Specification 2.95t*1.3m
Maximum working radius 8.3m*0.14t
Maximum ground lifting height 9.2m
Maximum underground lifting height
Winch device Hook speed 6.5m/min(4)
Rope type Φ8mm×45mm
Telescopic system Boom type Full automatic 5 section
Boom length 2.65m-8.92m
Telescopic length/time 6.36m/26sec
Up and downs Boom angle/time 0°-75°/14 sec
SlKB System SlKB angle/time 360°continuous/40sec
Outrigger System Outrigger active form Automatic for the 1 section,manual adjustment for 2,3 section.
Maximum extended dimensions 3900mm*3750mm
Traction System Working way Hydraulic motor driven,stepless speed change
Working speed 0-2.9Km/h
Ground length×width×2 1571mm*200mm*2
Grade ability 20°
Ground pressure 51Kpa
Safety Devices Air level,Moment limiter(Height limiter),Alarm Device,Emergency Stop Button
System voltage DC12V  
Diesel engine (optional) Type 2TNV70-PYU
Displacement 570ml
Maximum output 7.5kw
Starting method Electric staring
Fuel tank capacity 11L
Operation temperature -5°C-40°C
Battery capacity 12v45Ah
Petrol engine Model Kohler
Displacement 389.2ml
Maximum output 6.6kw
Starting method Recoil start/electric starting
Fuel tank capacity 6L
Operation temperature -5°C-40°C
Battery capacity 12v 36Ah
Electric motor Power suppler voltage AC 380V
Power 4KW
Remote Control Type BOX1.1(optional)
Operation range 100m
Water -proof standard IP67
Dimension Length *width *length 2900mm*800mm*1450mm
Weight Vehicle weight 2050kg
Package size   3200mm*1200mm*1900mm

Packaging & Shipping

 

Product advantange

The plane is full remote control models of 3 tons crawler crane, the function is all ready fuselage compact, hydraulic walking, safety design can prevent wrong operation, to adapt to the rugged outdoors, u-shaped telescopic boom, a weight display, leg sensor protection, high strength, and by using the 3 tons of the company the first winding double speed, high speed, efficient fast, cost-effective.

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Give The Solution Within 6 Hours
Max. Lifting Height: 9.2m
Rated Loading Capacity: 3ton
Certification: ISO9001, CE
Condition: New
Warranty: 1 Year
Customization:
Available

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Can you provide examples of products or equipment that incorporate injection molded parts?

Yes, there are numerous products and equipment across various industries that incorporate injection molded parts. Injection molding is a widely used manufacturing process that enables the production of complex and precise components. Here are some examples of products and equipment that commonly incorporate injection molded parts:

1. Electronics and Consumer Devices:

– Mobile phones and smartphones: These devices typically have injection molded plastic casings, buttons, and connectors.

– Computers and laptops: Injection molded parts are used for computer cases, keyboard keys, connectors, and peripheral device housings.

– Appliances: Products such as televisions, refrigerators, washing machines, and vacuum cleaners often incorporate injection molded components for their casings, handles, buttons, and control panels.

– Audio equipment: Speakers, headphones, and audio players often use injection molded parts for their enclosures and buttons.

2. Automotive Industry:

– Cars and Trucks: Injection molded parts are extensively used in the automotive industry. Examples include dashboard panels, door handles, interior trim, steering wheel components, air vents, and various under-the-hood components.

– Motorcycle and Bicycle Parts: Many motorcycle and bicycle components are manufactured using injection molding, including fairings, handle grips, footrests, instrument panels, and engine covers.

– Automotive Lighting: Headlights, taillights, turn signals, and other automotive lighting components often incorporate injection molded lenses, housings, and mounts.

3. Medical and Healthcare:

– Medical Devices: Injection molding is widely used in the production of medical devices such as syringes, IV components, surgical instruments, respiratory masks, implantable devices, and diagnostic equipment.

– Laboratory Equipment: Many laboratory consumables, such as test tubes, petri dishes, pipette tips, and specimen containers, are manufactured using injection molding.

– Dental Equipment: Dental tools, orthodontic devices, and dental prosthetics often incorporate injection molded components.

4. Packaging Industry:

– Bottles and Containers: Plastic bottles and containers used for food, beverages, personal care products, and household chemicals are commonly produced using injection molding.

– Caps and Closures: Injection molded caps and closures are widely used in the packaging industry for bottles, jars, and tubes.

– Thin-Walled Packaging: Injection molding is used to produce thin-walled packaging products such as trays, cups, and lids for food and other consumer goods.

5. Toys and Games:

– Many toys and games incorporate injection molded parts. Examples include action figures, building blocks, puzzles, board game components, and remote-controlled vehicles.

6. Industrial Equipment and Tools:

– Industrial machinery: Injection molded parts are used in various industrial equipment and machinery, including components for manufacturing machinery, conveyor systems, and robotic systems.

– Power tools: Many components of power tools, such as housing, handles, switches, and guards, are manufactured using injection molding.

– Hand tools: Injection molded parts are incorporated into a wide range of hand tools, including screwdrivers, wrenches, pliers, and cutting tools.

These are just a few examples of products and equipment that incorporate injection molded parts. The versatility of injection molding allows for its application in a wide range of industries, enabling the production of high-quality components with complex geometries and precise specifications.

How do innovations and advancements in injection molding technology influence part design and production?

Innovations and advancements in injection molding technology have a significant influence on part design and production. These advancements introduce new capabilities, enhance process efficiency, improve part quality, and expand the range of applications for injection molded parts. Here’s a detailed explanation of how innovations and advancements in injection molding technology influence part design and production:

Design Freedom:

Advancements in injection molding technology have expanded the design freedom for part designers. With the introduction of advanced software tools, such as computer-aided design (CAD) and simulation software, designers can create complex geometries, intricate features, and highly optimized designs. The use of 3D modeling and simulation allows for the identification and resolution of potential design issues before manufacturing. This design freedom enables the production of innovative and highly functional parts that were previously challenging or impossible to manufacture using conventional techniques.

Improved Precision and Accuracy:

Innovations in injection molding technology have led to improved precision and accuracy in part production. High-precision molds, advanced control systems, and closed-loop feedback mechanisms ensure precise control over the molding process variables, such as temperature, pressure, and cooling. This level of control results in parts with tight tolerances, consistent dimensions, and improved surface finishes. Enhanced precision and accuracy enable the production of parts that meet strict quality requirements, fit seamlessly with other components, and perform reliably in their intended applications.

Material Advancements:

The development of new materials and material combinations specifically formulated for injection molding has expanded the range of properties available to part designers. Innovations in materials include high-performance engineering thermoplastics, bio-based polymers, reinforced composites, and specialty materials with unique properties. These advancements allow for the production of parts with enhanced mechanical strength, improved chemical resistance, superior heat resistance, and customized performance characteristics. Material advancements in injection molding technology enable the creation of parts that can withstand demanding operating conditions and meet the specific requirements of various industries.

Process Efficiency:

Innovations in injection molding technology have introduced process optimizations that improve efficiency and productivity. Advanced automation, robotics, and real-time monitoring systems enable faster cycle times, reduced scrap rates, and increased production throughput. Additionally, innovations like multi-cavity molds, hot-runner systems, and micro-injection molding techniques improve material utilization and reduce production costs. Increased process efficiency allows for the economical production of high-quality parts in larger quantities, meeting the demands of industries that require high-volume production.

Overmolding and Multi-Material Molding:

Advancements in injection molding technology have enabled the integration of multiple materials or components into a single part through overmolding or multi-material molding processes. Overmolding allows for the encapsulation of inserts, such as metal components or electronics, with a thermoplastic material in a single molding cycle. This enables the creation of parts with improved functionality, enhanced aesthetics, and simplified assembly. Multi-material molding techniques, such as co-injection molding or sequential injection molding, enable the production of parts with multiple colors, varying material properties, or complex material combinations. These capabilities expand the design possibilities and allow for the creation of innovative parts with unique features and performance characteristics.

Additive Manufacturing Integration:

The integration of additive manufacturing, commonly known as 3D printing, with injection molding technology has opened up new possibilities for part design and production. Additive manufacturing can be used to create complex mold geometries, conformal cooling channels, or custom inserts, which enhance part quality, reduce cycle times, and improve part performance. By combining additive manufacturing and injection molding, designers can explore new design concepts, produce rapid prototypes, and efficiently manufacture customized or low-volume production runs.

Sustainability and Eco-Friendly Solutions:

Advancements in injection molding technology have also focused on sustainability and eco-friendly solutions. This includes the development of biodegradable and compostable materials, recycling technologies for post-consumer and post-industrial waste, and energy-efficient molding processes. These advancements enable the production of environmentally friendly parts that contribute to reducing the carbon footprint and meeting sustainability goals.

Overall, innovations and advancements in injection molding technology have revolutionized part design and production. They have expanded design possibilities, improved precision and accuracy, introduced new materials, enhanced process efficiency, enabled overmolding and multi-material molding, integrated additive manufacturing, and promoted sustainability. These advancements empower part designers and manufacturers to create highly functional, complex, and customized parts that meet the demands of various industries and contribute to overall process efficiency and sustainability.

What are injection molded parts, and how are they manufactured?

Injection molded parts are components or products that are produced through the injection molding manufacturing process. Injection molding is a widely used manufacturing technique for creating plastic parts with high precision, complexity, and efficiency. Here’s a detailed explanation of injection molded parts and the process of manufacturing them:

Injection Molding Process:

The injection molding process involves the following steps:

1. Mold Design:

The first step in manufacturing injection molded parts is designing the mold. The mold is a custom-made tool that defines the shape and features of the final part. It is typically made from steel or aluminum and consists of two halves: the cavity and the core. The mold design takes into account factors such as part geometry, material selection, cooling requirements, and ejection mechanism.

2. Material Selection:

The next step is selecting the appropriate material for the injection molding process. Thermoplastic polymers are commonly used due to their ability to melt and solidify repeatedly without significant degradation. The material choice depends on the desired properties of the final part, such as strength, flexibility, transparency, or chemical resistance.

3. Melting and Injection:

In the injection molding machine, the selected thermoplastic material is melted and brought to a molten state. The molten material, called the melt, is then injected into the mold under high pressure. The injection is performed through a nozzle and a runner system that delivers the molten material to the mold cavity.

4. Cooling:

After the molten material is injected into the mold, it begins to cool and solidify. Cooling is a critical phase of the injection molding process as it determines the final part’s dimensional accuracy, strength, and other properties. The mold is designed with cooling channels or inserts to facilitate the efficient and uniform cooling of the part. Cooling time can vary depending on factors such as part thickness, material properties, and mold design.

5. Mold Opening and Ejection:

Once the injected material has sufficiently cooled and solidified, the mold opens, separating the two halves. Ejector pins or other mechanisms are used to push or release the part from the mold cavity. The ejection system must be carefully designed to avoid damaging the part during the ejection process.

6. Finishing:

After ejection, the injection molded part may undergo additional finishing processes, such as trimming excess material, removing sprues or runners, and applying surface treatments or textures. These processes help achieve the desired final appearance and functionality of the part.

Advantages of Injection Molded Parts:

Injection molded parts offer several advantages:

1. High Precision and Complexity:

Injection molding allows for the creation of parts with high precision and intricate details. The molds can produce complex shapes, fine features, and precise dimensions, enabling the manufacturing of parts with tight tolerances.

2. Cost-Effective Mass Production:

Injection molding is a highly efficient process suitable for large-scale production. Once the mold is created, the manufacturing process can be automated, resulting in fast and cost-effective production of identical parts. The high production volumes help reduce per-unit costs.

3. Material Versatility:

Injection molding supports a wide range of thermoplastic materials, allowing for versatility in material selection based on the desired characteristics of the final part. Different materials can be used to achieve specific properties such as strength, flexibility, heat resistance, or chemical resistance.

4. Strength and Durability:

Injection molded parts can exhibit excellent strength and durability. The molding process ensures that the material is uniformly distributed, resulting in consistent mechanical properties throughout the part. This makes injection molded parts suitable for various applications that require structural integrity and longevity.

5. Minimal Post-Processing:

Injection molded parts often require minimal post-processing. The high precision and quality achieved during the molding process reduce the need for extensive additional machining or finishing operations, saving time and costs.

6. Design Flexibility:

With injection molding, designers have significant flexibility in part design. The process can accommodate complex geometries, undercuts, thin walls, and other design features that may be challenging or costly with other manufacturing methods. This flexibility allows for innovation and optimization of part functionality.

In summary, injection molded parts are components or products manufactured through the injection molding process. This process involves designing amold, selecting the appropriate material, melting and injecting the material into the mold, cooling and solidifying the part, opening the mold and ejecting the part, and applying finishing processes as necessary. Injection molded parts offer advantages such as high precision, complexity, cost-effective mass production, material versatility, strength and durability, minimal post-processing, and design flexibility. These factors contribute to the widespread use of injection molding in various industries for producing high-quality plastic parts.

China manufacturer Hydraulic Remote Control Telescopic 3t Cranes Knuckle Boom Crane Spider  China manufacturer Hydraulic Remote Control Telescopic 3t Cranes Knuckle Boom Crane Spider
editor by CX 2024-02-22

China best CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane

Product Description

Product Description

 

PRODUCT DESCRIPTIONS
Super-above Truck-mounted crane 
A truck-mounted crane is grouped together as a means of transport. By the boom, lifting torque, frame, legs and other
parts. Crane left and right operation can be both positive and negative 360-degree rotation, can also be full rotation.
Compared special crane trucks with crane, with a high speed, climbing ability characteristics. Enables fast movements,
efficiency, energy-saving.With a flexible, easy to operate, efficient, safe, and reliable.
A truck-mounted crane is grouped together as a means of transport. By the boom, lifting torque, frame, legs and other parts.
Crane left and right operation can be both positive and negative 360-degree rotation, can also be full rotation. Compared
special crane trucks with crane, with a high speed, climbing ability characteristics. Enables fast movements, efficiency,
energy-saving.With a flexible, easy to operate, efficient, safe, and reliable.

TECHNICAL PARAMETERS

Item Unit References
Max Lifting Moment t*m 28
Max Lifting Capacity kg 16000
Boom length m 4.81~11.85
Max Lifting Height m 13.2
Derick range ° 0~75°
Outrigger span mm 2280~5580
Size(length×width×height) mm 5140×2430×3260

1.Throttle Control System

        Changing the form of the previous manipulation and throttle operation individually, the Realization of the bilateral
handle synchronous and driving throttle acceleration and deceleration automatically, due to the speed change steady,
it can easily carry out the lifting work.

2.End position automatic hook device

        Maximum savings in preparation time before and after the operation, to ensure that the customer’s vehicle could be in a
driving state in the shortest time and prevent crane damage accident caused by hoist swing to enhance the safety of driving.

3. Hoisting overwinter device

        If a user is negligent or unfamiliar with the operation of lifting hooks, the hoisting overwinter device will stop hook-raise
in time, to prevent the safety of personnel and property caused by the fracture of wire rope.

4.Slewing locking device

        Slewing locking device can ensure that the lifting arm does not sway because of the centrifugal force during the driving
and steering process of the vehicle,to avoid all kinds of accidents caused by swaying.

5.Torque limiter

        It can select torque limit overload protection device to prevent users because of  negligence or unfamiliar with the lifting
operation principle of overload operation, thereby causing the vehicle rollover and crane damage accidents.

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Certification: GS, RoHS, CE, ISO9001
Customization:
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Estimated freight per unit.







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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

Can injection molded parts be customized or modified to meet unique industrial needs?

Yes, injection molded parts can be customized or modified to meet unique industrial needs. The injection molding process offers flexibility and versatility, allowing for the production of highly customized parts with specific design requirements. Here’s a detailed explanation of how injection molded parts can be customized or modified:

Design Customization:

The design of an injection molded part can be tailored to meet unique industrial needs. Design customization involves modifying the part’s geometry, features, and dimensions to achieve specific functional requirements. This can include adding or removing features, changing wall thicknesses, incorporating undercuts or threads, and optimizing the part for assembly or integration with other components. Computer-aided design (CAD) tools and engineering expertise are used to create custom designs that address the specific industrial needs.

Material Selection:

The choice of material for injection molded parts can be customized based on the unique industrial requirements. Different materials possess distinct properties, such as strength, stiffness, chemical resistance, and thermal stability. By selecting the most suitable material, the performance and functionality of the part can be optimized for the specific application. Material customization ensures that the injection molded part can withstand the environmental conditions, operational stresses, and chemical exposures associated with the industrial application.

Surface Finishes:

The surface finish of injection molded parts can be customized to meet specific industrial needs. Surface finishes can range from smooth and polished to textured or patterned, depending on the desired aesthetic appeal, functional requirements, or ease of grip. Custom surface finishes can enhance the part’s appearance, provide additional protection against wear or corrosion, or enable specific interactions with other components or equipment.

Color and Appearance:

Injection molded parts can be customized in terms of color and appearance. Colorants can be added to the material during the molding process to achieve specific shades or color combinations. This customization option is particularly useful when branding, product differentiation, or visual identification is required. Additionally, surface textures, patterns, or special effects can be incorporated into the mold design to create unique appearances or visual effects.

Secondary Operations:

Injection molded parts can undergo secondary operations to further customize or modify them according to unique industrial needs. These secondary operations can include post-molding processes such as machining, drilling, tapping, welding, heat treating, or applying coatings. These operations enable the addition of specific features or functionalities that may not be achievable through the injection molding process alone. Secondary operations provide flexibility for customization and allow for the integration of injection molded parts into complex assemblies or systems.

Tooling Modifications:

If modifications or adjustments are required for an existing injection molded part, the tooling can be modified or reconfigured to accommodate the changes. Tooling modifications can involve altering the mold design, cavity inserts, gating systems, or cooling channels. This allows for the production of modified parts without the need for creating an entirely new mold. Tooling modifications provide cost-effective options for customizing or adapting injection molded parts to meet evolving industrial needs.

Prototyping and Iterative Development:

Injection molding enables the rapid prototyping and iterative development of parts. By using 3D printing or soft tooling, prototype molds can be created to produce small quantities of custom parts for testing, validation, and refinement. This iterative development process allows for modifications and improvements to be made based on real-world feedback, ensuring that the final injection molded parts meet the unique industrial needs effectively.

Overall, injection molded parts can be customized or modified to meet unique industrial needs through design customization, material selection, surface finishes, color and appearance options, secondary operations, tooling modifications, and iterative development. The flexibility and versatility of the injection molding process make it a valuable manufacturing method for creating highly customized parts that address specific industrial requirements.

Are there specific considerations for choosing injection molded parts in applications with varying environmental conditions or industry standards?

Yes, there are specific considerations to keep in mind when choosing injection molded parts for applications with varying environmental conditions or industry standards. These factors play a crucial role in ensuring that the selected parts can withstand the specific operating conditions and meet the required standards. Here’s a detailed explanation of the considerations for choosing injection molded parts in such applications:

1. Material Selection:

The choice of material for injection molded parts is crucial when considering varying environmental conditions or industry standards. Different materials offer varying levels of resistance to factors such as temperature extremes, UV exposure, chemicals, moisture, or mechanical stress. Understanding the specific environmental conditions and industry requirements is essential in selecting a material that can withstand these conditions while meeting the necessary standards for performance, durability, and safety.

2. Temperature Resistance:

In applications with extreme temperature variations, it is important to choose injection molded parts that can withstand the specific temperature range. Some materials, such as engineering thermoplastics, exhibit excellent high-temperature resistance, while others may be more suitable for low-temperature environments. Consideration should also be given to the potential for thermal expansion or contraction, as it can affect the dimensional stability and overall performance of the parts.

3. Chemical Resistance:

In industries where exposure to chemicals is common, it is critical to select injection molded parts that can resist chemical attack and degradation. Different materials have varying levels of chemical resistance, and it is important to choose a material that is compatible with the specific chemicals present in the application environment. Consideration should also be given to factors such as prolonged exposure, concentration, and frequency of contact with chemicals.

4. UV Stability:

For applications exposed to outdoor environments or intense UV radiation, selecting injection molded parts with UV stability is essential. UV radiation can cause material degradation, discoloration, or loss of mechanical properties over time. Materials with UV stabilizers or additives can provide enhanced resistance to UV radiation, ensuring the longevity and performance of the parts in outdoor or UV-exposed applications.

5. Mechanical Strength and Impact Resistance:

In applications where mechanical stress or impact resistance is critical, choosing injection molded parts with the appropriate mechanical properties is important. Materials with high tensile strength, impact resistance, or toughness can ensure that the parts can withstand the required loads, vibrations, or impacts without failure. Consideration should also be given to factors such as fatigue resistance, abrasion resistance, or flexibility, depending on the specific application requirements.

6. Compliance with Industry Standards:

When selecting injection molded parts for applications governed by industry standards or regulations, it is essential to ensure that the chosen parts comply with the required standards. This includes standards for dimensions, tolerances, safety, flammability, electrical properties, or specific performance criteria. Choosing parts that are certified or tested to meet the relevant industry standards helps ensure compliance and reliability in the intended application.

7. Environmental Considerations:

In today’s environmentally conscious landscape, considering the sustainability and environmental impact of injection molded parts is increasingly important. Choosing materials that are recyclable or biodegradable can align with sustainability goals. Additionally, evaluating factors such as energy consumption during manufacturing, waste reduction, or the use of environmentally friendly manufacturing processes can contribute to environmentally responsible choices.

8. Customization and Design Flexibility:

Lastly, the design flexibility and customization options offered by injection molded parts can be advantageous in meeting specific environmental or industry requirements. Injection molding allows for intricate designs, complex geometries, and the incorporation of features such as gaskets, seals, or mounting points. Customization options for color, texture, or surface finish can also be considered to meet specific branding or aesthetic requirements.

Considering these specific considerations when choosing injection molded parts for applications with varying environmental conditions or industry standards ensures that the selected parts are well-suited for their intended use, providing optimal performance, durability, and compliance with the required standards.

Can you describe the range of materials that can be used for injection molding?

Injection molding offers a wide range of materials that can be used to produce parts with diverse properties and characteristics. The choice of material depends on the specific requirements of the application, including mechanical properties, chemical resistance, thermal stability, transparency, and cost. Here’s a description of the range of materials commonly used for injection molding:

1. Thermoplastics:

Thermoplastics are the most commonly used materials in injection molding due to their versatility, ease of processing, and recyclability. Some commonly used thermoplastics include:

  • Polypropylene (PP): PP is a lightweight and flexible thermoplastic with excellent chemical resistance and low cost. It is widely used in automotive parts, packaging, consumer products, and medical devices.
  • Polyethylene (PE): PE is a versatile thermoplastic with excellent impact strength and chemical resistance. It is used in various applications, including packaging, pipes, automotive components, and toys.
  • Polystyrene (PS): PS is a rigid and transparent thermoplastic with good dimensional stability. It is commonly used in packaging, consumer goods, and disposable products.
  • Polycarbonate (PC): PC is a transparent and impact-resistant thermoplastic with high heat resistance. It finds applications in automotive parts, electronic components, and optical lenses.
  • Acrylonitrile Butadiene Styrene (ABS): ABS is a versatile thermoplastic with a good balance of strength, impact resistance, and heat resistance. It is commonly used in automotive parts, electronic enclosures, and consumer products.
  • Polyvinyl Chloride (PVC): PVC is a durable and flame-resistant thermoplastic with good chemical resistance. It is used in a wide range of applications, including construction, electrical insulation, and medical tubing.
  • Polyethylene Terephthalate (PET): PET is a strong and lightweight thermoplastic with excellent clarity and barrier properties. It is commonly used in packaging, beverage bottles, and textile fibers.

2. Engineering Plastics:

Engineering plastics offer enhanced mechanical properties, heat resistance, and dimensional stability compared to commodity thermoplastics. Some commonly used engineering plastics in injection molding include:

  • Polyamide (PA/Nylon): Nylon is a strong and durable engineering plastic with excellent wear resistance and low friction properties. It is used in automotive components, electrical connectors, and industrial applications.
  • Polycarbonate (PC): PC, mentioned earlier, is also considered an engineering plastic due to its exceptional impact resistance and high-temperature performance.
  • Polyoxymethylene (POM/Acetal): POM is a high-strength engineering plastic with low friction and excellent dimensional stability. It finds applications in gears, bearings, and precision mechanical components.
  • Polyphenylene Sulfide (PPS): PPS is a high-performance engineering plastic with excellent chemical resistance and thermal stability. It is used in electrical and electronic components, automotive parts, and industrial applications.
  • Polyetheretherketone (PEEK): PEEK is a high-performance engineering plastic with exceptional heat resistance, chemical resistance, and mechanical properties. It is commonly used in aerospace, medical, and industrial applications.

3. Thermosetting Plastics:

Thermosetting plastics undergo a chemical crosslinking process during molding, resulting in a rigid and heat-resistant material. Some commonly used thermosetting plastics in injection molding include:

  • Epoxy: Epoxy resins offer excellent chemical resistance and mechanical properties. They are commonly used in electrical components, adhesives, and coatings.
  • Phenolic: Phenolic resins are known for their excellent heat resistance and electrical insulation properties. They find applications in electrical switches, automotive parts, and consumer goods.
  • Urea-formaldehyde (UF) and Melamine-formaldehyde (MF): UF and MF resins are used for molding electrical components, kitchenware, and decorative laminates.

4. Elastomers:

Elastomers, also known as rubber-like materials, are used to produce flexible and elastic parts. They provide excellent resilience, durability, and sealing properties. Some commonly used elastomers in injection molding include:

  • Thermoplastic Elastomers (TPE): TPEs are a class of materials that combine the characteristics of rubber and plastic. They offer flexibility, good compression set, and ease of processing. TPEs find applications in automotive components, consumer products, and medical devices.
  • Silicone: Silicone elastomers provide excellent heat resistance, electrical insulation, and biocompatibility. They are commonly used in medical devices, automotive seals, and household products.
  • Styrene Butadiene Rubber (SBR): SBR is a synthetic elastomer with good abrasion resistance and low-temperature flexibility. It is used in tires, gaskets, and conveyor belts.
  • Ethylene Propylene Diene Monomer (EPDM): EPDM is a durable elastomer with excellent weather resistance and chemical resistance. It finds applications in automotive seals, weatherstripping, and roofing membranes.

5. Composites:

Injection molding can also be used to produce parts made of composite materials, which combine two or more different types of materials to achieve specific properties. Commonly used composite materials in injection molding include:

  • Glass-Fiber Reinforced Plastics (GFRP): GFRP combines glass fibers with thermoplastics or thermosetting resins to enhance mechanical strength, stiffness, and dimensional stability. It is used in automotive components, electrical enclosures, and sporting goods.
  • Carbon-Fiber Reinforced Plastics (CFRP): CFRP combines carbon fibers with thermosetting resins to produce parts with exceptional strength, stiffness, and lightweight properties. It is commonly used in aerospace, automotive, and high-performance sports equipment.
  • Metal-Filled Plastics: Metal-filled plastics incorporate metal particles or fibers into thermoplastics to achieve properties such as conductivity, electromagnetic shielding, or enhanced weight and feel. They are used in electrical connectors, automotive components, and consumer electronics.

These are just a few examples of the materials used in injection molding. There are numerous other specialized materials available, each with its own unique properties, such as flame retardancy, low friction, chemical resistance, or specific certifications for medical or food-contact applications. The selection of the material depends on the desired performance, cost considerations, and regulatory requirements of the specific application.

China best CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane  China best CHINAMFG Mini Small Hydraulic Folding Boom Pickup Truck Car Mounted Crane
editor by CX 2023-12-28

China HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale torque limiter browning

Characteristic: TRUCK CRANE
Showroom Location: None
Condition: New
Software: ~12000kg
Rated Loading Ability: twelve TON
Rated Lifting Moment: 24Ton.m
Max. Lifting Peak: sixteen.2m
Span: 5712mm
Guarantee: 1 Year
Hydraulic Cylinder Model: HAOY
Hydraulic Pump Brand: Liyuan
Hydraulic Valve Model: XIHU (WEST LAKE) DIS.
Engine Brand: no
Special Marketing Point: wi-fi remote handle
Machinery Take a look at Report: Offered
Movie outgoing-inspection: Supplied
Advertising Sort: New Item 2571
Warranty of core factors: 1 12 months
Main Parts: Pump
Bodyweight (KG): 4500 kg
max lifting moment: 24ton.m
max lifing ability: 12000kg
max functioning radius: twelve.6m
slewing angle: 360
installation room: 1100mm
outrigger span: 5712mm
crane self weight: 4500kg
Increase sort: knuckle growth
Manage program: distant manage
protection technique: Torque limiter
Packaging Details: 40′ open up best:10 models Standard export packing
Port: ZheJiang /HangZhou/HangZhou

Items Description HAOY 12 ton electrical hydraulic articulated boom truck crane lorry crane for sale Packaging & Delivery Organization Data other truck cranes,you should simply click the website link to see the details

model max lifting abilitymax working radiusaerial operating peakcrane self bodyweight
TELESCOPIC Growth
HY3.2S33.2 TON8.2M12M1100KG
HY4S34 TON8.2M12M1150KG
HY4S44TON10.5M14.2M1300KG
HY5S35 TON8.7M13M2050KG
HY5S45 TON11.2M15.5M2100KG
HY6.3S36.3 TON8.7M13M2150KG
HY6.3S46.3 TON11.2M15.5M2150KG
HY8S48 TON14M18.2M3100KG
HY8S58 TON17.1M21.2M3200KG
HY10S410 TON14.2M18.4M3900KG
HY10S510 TON17.3M21.4M3950KG
HY12S412 TON14.8M19M4200KG
HY12S512 TON17.2M21.3M4260KG
HY14S514 TON18M22M4850KG
HY16S516 TON19M23M6300KG
FOLDING Growth
HY08Z40.8 TON3.63M4.6M160KG
HY1.3Z41.3 TON4.2M5.6M300KG
HY1.8Z41.8 TON4.6M6.2M400KG
HY2Z2C2 TON5.1M7.2m850KG
HY64Z33.2 TON7.5M10.5M1080KG
HY80Z34 TON7.5M10.5M1080KG
HY126Z46.3 TON10M12.8M2120KG
HY160Z48 TON10M12.8M3000KG
HY200Z510 TON12.6M16.2M3400KG
HY240Z512 TON12.6M16.2M4200KG
HY320Z516 TON12.6M16.2M4900KG
HY400Z720 TON16.1M20M7800KG
HY600Z730 TON16.1M20M8100KG
HY700Z735 TON16.1M20M8800KG
Advocate Products FAQ 1) How a lot of a long time of your manufacturing facility?We have 12 years creation and virtually ten a long time experience, we exported to far more than fifty international locations & areas.And we are a manufacturer specialized in truck crane,pickup crane,aerial system truck, Steel 20mm Linear Rails HGR20 maritime crane.2) Which type of payment you can be acknowledged?Typically each of T/T & L/C at sight are alright for us.Alibaba trade assurance,credit history card,western union.3) How about the supply time?20-forty doing work days soon after gained thirty% T/T or L/C.70% stability payment prior to shipping.4) What is your warranty?Usually is 1 calendar year, if big quantities we can negotiate.We will mail the components to you for cost-free if have difficulties within 1 yr.5) What is your MOQ?MOQ: 1 set6) Can you acknowledge OEM service?Sure for sure my friend.We give emblem, MG28.thirty maritime equipment box for marine employed price tag bundle,personalized,and also can personalized the merchandise in accordance to your specifications.7) Optional Attachment?Distant Management, Basket, Auger, Grapple, Prime Seat, Drum shape gear coupling 45# steel factory price for motor pump link rigid shaft coupling manufacturer high pace very hot sale Rear Legs

limiter torque

Types of Torque Limiters

Regardless of the type of application, there are several types of torque limiters available. Some of these types include Ball detent limiters, Hydraulic torque limiters, and Magnetic torque limiters.

Ball detent limiter

Typically, the ball detent torque limiter is used in applications where precision is essential. For example, in packaging or textile applications, the detent can limit the amount of torque transmitted from the input gear to the output gear. In some applications, the torque limiter is a preferable option over a slip clutch.
The basic ball detent mechanism involves a series of metal balls encased in two circular plates. The balls are held in place by springs. In normal operation, the balls rest in sockets within a pressure flange. However, in an overload situation, the balls are forced out of the sockets and into the detents. The balls are then forced back into the sockets by the springs. This action continues until the overload is removed.
The ball detent torque limiter has a unique design that provides reliable overload protection. The balls are held in place by springs and the assembly rotates with the driven machine until an overload occurs.
The balls are sized to maintain a predetermined axial separation distance between the driving surface of the input gear and the detent surface of the backing plate. This axial separation distance is greater than the diameter of the primary balls. When an overload is sensed, the springs disengage the balls and the ball detent torque limiter releases the load.
In addition to the ball detent torque limiter, there are several other types of torque limiters. Some of them are simple shear pins or cam followers, while others are pneumatically engaged. These types of torque limiters can be used in conjunction with limit switches.
The ball detent torque limiter may be manually engaged when the over-torque condition is corrected. The limit switch can be manually activated or can be automatically triggered by a proximity sensor.
Torque limiters can be used to prevent physical injury to personnel and damage to sensitive equipment. They are available in various designs, including single-position and multi-position units. Many servo-driven axes are equipped with these devices. They are commonly used in mechanical wastewater treatment plants and in chain couplings.
Unlike other torque limiters, the ball detent torque limiter can accurately disengage at the preset torque value. It also has a more predictable response time than other types of torque limiters.

Magnetic torque limiter

Using a torque limiter in conjunction with a motor can be a tricky business. It requires an understanding of the mechanical gearbox and torque limiter and how they work together to reduce mechanical vibrations and achieve the correct torque levels.
A torque limiter is a simple device that transmits torque through magnetic interaction. It is a useful device for measuring and controlling the tightening of implantable medical devices such as screws and plates. Magnetic torque limiters offer several advantages over conventional devices, including increased durability and reliability. They can be sterilized and are easy to clean. In addition, they require little maintenance and are not prone to wear and tear.
Magnetic torque limiters have two main components: a handle with a cylindrical body and a mono-block shaft. The handle has an arm that enables it to be adjusted and the shaft has an arm bearing to make it movable. The handle may be used on shafts with different drive geometries.
The handle has a rotating collar that is indexed with ball detents to allow it to be adjusted. The collar is user-accessible and has the capacity to do more than just compress or extend the torque limit. It can also be used to change the gap between the two magnets in the handle.
The main component of the magnetic torque limiter is the handle, which includes a pair of magnets with opposing poles. This configuration has the magnetic effect of generating a torque from the magnetic hysteresis resistance of the magnets. The magnets are linked together by metal pins, which can be replaced.
The first pocket (4) is located on the first side of the cylindrical handle-body. The second pocket (5) is located on the second side. Both pockets contain at least one magnet, preferably a neodymium magnet. The pocket on the first side intersects the second pocket on the second side in the central through bore. The main objective of this pocket is to transmit the smallest possible torque from the input to the output.
The best way to find out how the magnetic torque limiter of the present invention performs is to put it to the test. Several tests have been conducted to determine its performance. The results show that it translates 24 Nm at a nominal speed of 2500 rpm from the input to the output.limiter torque

Hydraulic torque limiter

Using a Hydraulic Torque Limiter to protect equipment from excessive torque is beneficial in many applications. These devices are a safe way to maintain maximum torque in a power transmission system. They are available in many different types, and can be used in practically any application.
They are able to protect from excessive torque by controlling the flow of gas and hydraulic fluid in the drive system. They are used in various applications, such as conveyors, assembly lines, and industrial robots. They are used to protect equipment from overloads, and assure minimal downtime.
They are also used in applications where the driven device cannot absorb all of the output torque. The torque limiter transfers the torque from the driving shaft to the driven member. The torque limiter is also used to couple gears, sprockets, and other rotating bodies. The torque limiter transmits torque at a specified level, and stops transmitting when the torque exceeds a preset value.
Torque limiters are generally light-weight, and can be easily mounted. However, they can present a safety hazard to operating personnel. They are used in many different industries, including textile, woodworking, printing, and converting machinery.
The torque limiter is used to disconnect the inertia of the system from the jammed section, which prevents damage. In this instance, the limiter is placed as close as possible to the jam source.
Torque limiters operate by comparing the internal pressures in a hydraulic cylinder. When the pressures exceed a specified value, the torque limiter stops transmitting and begins disengaging the driven device.
These devices also allow for the use of smaller prime movers and less fuel. They can also be used to prevent stalling of the prime mover under heavy loads.
Torque limiters are available in a variety of sizes and are typically used in applications where the driven device cannot absorb all of the output torque. They are used in many industrial robots, conveyors, assembly lines, and printing and converting machinery.
Torque limiters are available in mechanical, hydraulic, and synchronous magnetic types. Some of them can tolerate continuous slip, but some are designed to slip at a specified torque value.limiter torque

CZPT Electric torque limiter

Whether you need an industrial clutch, electromagnetic brake, or torque limiter, CZPT Electric has a solution for you. This company offers the broadest range of industrial products and brakes, as well as customized solutions for your application. The company’s products are used across a wide range of industries, including material handling, crane and motion control, elevator and escalator, forklift, turf and garden, marine propulsion, and sewage pumps.
It has a large sales and distribution operation in North America, and is available in over 70 countries. The company’s products are designed to meet industrial demands for quality, performance, and reliability. Its line of Adjustable Torque Controls are designed to provide soft starting functions, as well as repeatable stops.
Torque limiters are used in many different industries, including steel mills, conveyor drives, process pumps, marine propulsion, and paper mills. They are designed to separate the load from the drive when an overload occurs. They offer both mechanical and electronic solutions, and are available in an open or closed design. They can operate at a range of 160 to 11,000 rpm. They also feature a shear neck, fail-safe, wedge-shaped construction, and clamping screws. They are available with RoHS compliant options, as well as CE certified.
These limiters also feature a proximity sensor target that can be used to switch off the drive after an overload. CZPT Electric has several models with full range torque control, which provides repeatable starts and stops. They can also be used with electrically released brakes. The company also offers a variety of clutch/brake combinations, including a wide selection of models with a ball detent or synchronous magnetic disconnect.
CZPT Electric’s products are manufactured to a high standard and are designed to meet the demands of today’s industrial applications. The company has a wide range of product catalogues available for browsing. You can find a list of available products and more information on the company’s website, which can be accessed by clicking on the “Product Catalogues” button at the bottom of the page.
China HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale     torque limiter browningChina HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale     torque limiter browning
editor by Cx2023-07-13

China HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale torque limiter bit driver

Feature: TRUCK CRANE
Showroom Location: None
Condition: New
Application: ~12000kg
Rated Loading Capacity: twelve TON
Rated Lifting Second: 24Ton.m
Max. Lifting Peak: 16.2m
Span: 5712mm
Warranty: 1 Year
Hydraulic Cylinder Brand name: HAOY
Hydraulic Pump Brand: Liyuan
Hydraulic Valve Manufacturer: XIHU (WEST LAKE) DIS.
Motor Manufacturer: no
Unique Marketing Position: wi-fi distant control
Machinery Test Report: Presented
Video outgoing-inspection: Provided
Advertising and marketing Variety: New Merchandise 2571
Warranty of core parts: 1 Year
Main Parts: Pump
Excess weight (KG): 4500 kg
max lifting minute: 24ton.m
max lifing capability: 12000kg
max functioning radius: twelve.6m
slewing angle: 360
installation place: 1100mm
outrigger span: 5712mm
crane self weight: 4500kg
Increase sort: knuckle increase
Handle program: distant control
defense technique: Torque limiter
Packaging Specifics: 40′ open up best:10 models Regular export packing
Port: ZheJiang /HangZhou/HangZhou

Merchandise Description HAOY 12 ton electrical hydraulic articulated increase truck crane lorry crane for sale Packaging & Shipping Business Info other truck cranes,remember to click the hyperlink to see the particulars

model max lifting capacitymax working radiusaerial functioning topcrane self fat
TELESCOPIC Boom
HY3.2S33.2 TON8.2M12M1100KG
HY4S34 TON8.2M12M1150KG
HY4S44TON10.5M14.2M1300KG
HY5S35 TON8.7M13M2050KG
HY5S45 TON11.2M15.5M2100KG
HY6.3S36.3 TON8.7M13M2150KG
HY6.3S46.3 TON11.2M15.5M2150KG
HY8S48 TON14M18.2M3100KG
HY8S58 TON17.1M21.2M3200KG
HY10S410 TON14.2M18.4M3900KG
HY10S510 TON17.3M21.4M3950KG
HY12S412 TON14.8M19M4200KG
HY12S512 TON17.2M21.3M4260KG
HY14S514 TON18M22M4850KG
HY16S516 TON19M23M6300KG
FOLDING Boom
HY08Z40.8 TON3.63M4.6M160KG
HY1.3Z41.3 TON4.2M5.6M300KG
HY1.8Z41.8 TON4.6M6.2M400KG
HY2Z2C2 TON5.1M7.2m850KG
HY64Z33.2 TON7.5M10.5M1080KG
HY80Z34 TON7.5M10.5M1080KG
HY126Z46.3 TON10M12.8M2120KG
HY160Z48 TON10M12.8M3000KG
HY200Z510 TON12.6M16.2M3400KG
HY240Z512 TON12.6M16.2M4200KG
HY320Z516 TON12.6M16.2M4900KG
HY400Z720 TON16.1M20M7800KG
HY600Z730 TON16.1M20M8100KG
HY700Z735 TON16.1M20M8800KG
Suggest Items FAQ 1) How several a long time of your manufacturing facility?We have 12 several years production and practically ten years knowledge, we exported to a lot more than 50 countries & regions.And we are a company specialized in truck crane,pickup crane,aerial platform truck, Steel 20mm Linear Rails HGR20 maritime crane.2) Which kind of payment you can be recognized?Normally both of T/T & L/C at sight are okay for us.Alibaba trade assurance,credit score card,western union.3) How about the delivery time?twenty-forty working times soon after acquired thirty% T/T or L/C.70% harmony payment before shipping.4) What’s your guarantee?Usually is 1 calendar year, if big portions we can negotiate.We will mail the components to you for free if have problems in 1 year.5) What is actually your MOQ?MOQ: 1 set6) Can you acknowledge OEM provider?Sure for sure my good friend.We provide symbol, MG28.thirty maritime gear box for marine employed value deal,tailored,and also can personalized the item in accordance to your demands.7) Optional Attachment?Distant Manage, Basket, Auger, Grapple, Top Seat, Drum condition gear coupling forty five# metal factory price tag for motor pump link rigid shaft coupling company substantial velocity scorching sale Rear Legs

limiter torque

Choosing the Right Torque Limiter

Whether you are looking for a synchronous magnetic torque limiter, a mechanical torque limiter, a CZPT(r) Tolerance Ring, or a ball detent torque limiter, there are many options available. Hopefully this article will help you decide which type of limiter to use for your application.

Mechanical torque limiters

Designed to safeguard the main components of a machine, mechanical torque limiters are used in various applications, including woodworking, printing and converting, industrial robots and conveyors. They provide disengagement within milliseconds when torque overload occurs. The main purpose of these devices is to protect the machine’s drive line from excessive torque. They can be installed in several parts of a machine to maximize protection.
Mechanical torque limiters come in two main types: friction and magnetic. The friction type is made up of spring loaded friction disks that slip against each other when torque exceeds a threshold. The friction disks interface with each other like an automobile clutch. The spring rate of the disks is adjusted to create the torque slip threshold. Once the threshold has been reached, the friction disks slip out of the socket and disengage the drive line.
Mechanical torque limiters are often regarded as old fashioned. However, they offer better accuracy than alternatives, making them more suitable for a variety of applications. They are easily adjustable, allowing users to customize the disengagement torque value after installation.
Mechanical torque limiters are available in various sizes and can be used in virtually any application. These devices can be placed in multiple locations throughout a machine to disengage the drive line before the electronic device. They are able to disengage the drive line in a fraction of a second, ensuring that no damage is done to the machine.
Ball and roller torque limiters are popular designs. They are available for in-line and offset transmissions. These designs are often made with wide gears to accommodate a variety of torque ranges. They are also used for industrial robots and sheet metal processing equipment.

Synchronous magnetic torque limiters

Several types of torque limiters are available. Some of these are designed to automatically reset themselves after a period of overload. Others need to be reset manually. Among these are the synchronous magnetic torque limiter, the friction plate torque limiter and the spring-loaded pawl-spring torque limiter.
The synchronous magnetic torque limiter works with a pair of strong magnets mounted on each shaft. This provides a quick response time and the ability to transmit power to other parts of the vehicle. However, these limiters can have more backlash than mechanical types.
The synchronous magnetic torque limiter can be modified to work with various types of magnets. The magnets can be made closer or further apart. This will change the torque limitation without leaving the spirit of the invention.
The friction plate torque limiter can also be used as a shaft-to-shaft coupling. This is useful for applications where the machine is constantly running. The torque limiter also prevents torsional strain on the drive shaft.
Another type of torque limiter uses hard balls that are held in place by springs. The balls detach to disconnect the drive when necessary. This is similar to a clutch. The balls can be housed in conical holes in the traction flange. The springs prevent the balls from slipping out of the flange.
Another type of torque limiter uses springs, shear pins, and other mechanical components. It’s designed to shut down the machine when there’s too much inertia. This is important because too much inertia can cause a crash. This type of torque limiter can be used to prevent catastrophic failure.
There are also torque limiters that use magnetic particles instead of magnets. These can be statically set or dynamically set.limiter torque

Ball detent torque limiters

Choosing the right torque limiter can protect your machinery against damage. They can also prevent physical injury to workers. There are several designs to choose from. Some systems offer a single position device. Others offer a random reset device. The selection is based on your application.
Ball detent torque limiters are used in applications where precise torque is required. They offer good torque density and are suitable for packaging, woodworking, textile and food processing machinery. The design of these units allows them to react quickly and accurately to an overload. They can be manually engaged or automatically engaged when an over-torque condition is corrected.
In a typical ball detent torque limiter, a number of balls or rollers are used in sockets. When the load is overloaded, the balls or rollers slide out of the sockets. The balls are made of chrome-alloy steel that is hardened to at least Rc 60.
A torque limiter is used to prevent physical injury and damage to rotating machine components. It protects expensive components. They are used in servo systems, packaging, woodworking, textile and food processing machinery, as well as a wide range of other applications.
The design of a torque limiter can cause significant wear on the detents. Therefore, the selection of a torque limiter must consider the number of components and the complexity of the design.
Some torque limiters use special methods to eliminate internal backlash. Others use a pneumatic control system. An air pressure system applies force to a piston that applies torque to the balls or rollers in the detent. The air pressure is then exhausted from an air chamber when the overload occurs.
The air pressure is also used to disengage the torque limiter in case of an accident. The pneumatic control system is also used in more advanced ball detent torque limiters.

CZPT(r) Tolerance Ring

CZPT(r) Tolerance Ring limits limiter torque to a greater extent than a conventional design. This ring comprises a resilient material band extending between a pair of components. Each of the components is statically coupled to the other. Each of the components has a pair of radial projections adapted to exert radial forces against the other. Typically, the inner and outer components rotate with respect to one another. This rotation is caused by the torque transmitted by the tolerance ring. This torque can exceed the force of interference fit.
The tolerance ring includes an outer circumference, a tangent circle 36, and a center point 38. The diameter of the tolerance ring is determined by the amount of overlap between the ends of the band. Normally, the diameter of the tolerance ring is smaller than the diameter of the unformed annular portions.
The tolerance ring may be made of metal such as spring steel. This material provides increased gripping strength and radial flexibility. However, tolerance rings can also be made of harder material. The inner component can be made of a material having a VPNIC less than the tolerance ring’s VPNTR.
The tolerance ring also includes a guide portion extending from an unformed annular portion of the band. The guide portion defines an entrance at one end of the ring. The entrance can be slanted in relation to the axis of the ring. The perimeter of the entrance is a fraction of the perimeter of the band.
The tolerance ring can also include a plurality of wave structures extending radially outward from the undeformed portion. These structures can be regular formations, such as ridges or fingers, or they can be partially disconnected from the undeformed portion. Each wave structure can have a different physical appearance. They can be arranged to have a plurality of columns, or they may be one or two rows of formations. The number of wave structures can be anywhere from a few to dozens. These structures can also be partially disconnected from the undeformed portion, allowing them to provide enhanced gripping properties.limiter torque

Challenge slip clutch/friction plate torque limiters

Choosing the right torque limiter can help you save money, prevent damage and extend the life of your machine. Typically, torque limiters are used in engines of all types of manual automobiles. They are also used in servo motor drives, conveyors, robotic applications, printing and converting machines, and in sheet metal processing equipment.
One of the most important reasons to consider a torque limiter is the protection it offers to your rotating parts. Unnecessary torque can wear out components, reduce efficiency and lead to downtime. In addition, unexpected forces can exceed the design of a mechanism. Torque limiters can also act as a clamping hub for direct drives.
Torque limiters are also useful in limiting damage from jams. These are generally cylindrical devices that are made from steel, and are used to transfer torque from a drive shaft to an output shaft. They appear to be rings, but are actually composed of an internal assembly of gears. A torque limiter can be configured for electrical actuation or manual operation.
Another important function of a torque limiter is to provide a consistent torque level. This can help reduce downtime and prevent larger, more costly accidents.
The most obvious way to achieve this is through a slip clutch. A slip clutch is a clutch that disconnects from the main drive, allowing inertia to uncouple from a jammed section. This is achieved by using a spring or a shear pin connection.
Another interesting function of a torque limiter is to allow for a longer service life of the shaft in a low-speed application. They are often used in combination with sprocket gears or timing belts. This can provide a smoother, more consistent torque level.
China HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale     torque limiter bit driverChina HAOY 12 ton electric hydraulic articulated boom truck crane lorry crane for sale     torque limiter bit driver
editor by Cx2023-07-11

China best torque limiter factory manufacturer & supplier 50t Qy50K-2 Hydraulic Boom Truck Crane for Mobile Lifting with top quality & best price

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Product Description

• Leading overall performance: the boom length in total extension is 39.5m, the functionality foremost in 5%. The grade capacity is forty%, which make the device have excellent highway adaptability.
• The special U growth and plug-in growth head make the load-carrying capacity much more well balanced, and lift much more smoothly.
• The special stretch and retraTORQUE LIMITER Apps Torque Limiters can be utilised to safeguard any equipment with rotating elements. If there is any threat of a generate shaft transmitting too a lot torque to the pushed shaft or tangential parts, a Torque Limiter can make sure torque never reaches critical amounts. The elements pair the two rotating bodies and introduce a disconnect technique.ct approach stops the misoperation the extend and retract of the increase is safer and much more dependable.
• The handle method is optimized by 8 patents lifting, rotation, and luffing are effortless to deal with and dependable.
• 6 exclusive systems provide the high quality assurance, and make the goods keep a high price.
• The innovative jib program adopts embedded block, plug-in increase head and octagon jib, which has exceptional lifting functionality and risk-free and reputable lifting work.
• The distinctive extend and retract strategy avoids the bend of the main pipe and cylinder and the crack of the increase induced by misoperation, bettering the safety of the functions.
• 8 patent methods ensure the sleek, substantial effectiveness and strength conservation of the lifting, rotation, and luffing systems.
• Adopt the new hydraulic motor with big torque commencing point, ma ept the secondary lifting safer.
• The torque limiter adopts colourful Lcd screen, noticing the intelligence of the failure analysis. The precision is forward of the business.
• The humanity design and style tends to make the cab and handle cab far more roomy, and easy to run.
• 6 special production systems make sure the high good quality.

Complex Parameters
 

Max. whole rated lifting ability t fifty
Min. rated wor ept radius m 3
Turning radius at turntable tail mm 3800
Max. load instant Base boom KN.m 2009
Fully-extended boom 1129
Outrigger span Longitudinal m 6.one
Lateral 7.one
Hoist top Base increase m 11.9
Fully-prolonged growth 44
Fully-extended growth + Jib fifty eight.one
Boom duration Base boom m 11.4
Fully-extended increase forty three.5
Fully-prolonged growth + Jib 59.5
Jib offset angle ° , fifteen, thirty
Time for boom boosting s ≤40
Time for boom extending entirely s ≤90
Max. slewing speed r/min ≥2.
Outrigger extending and retracting time Outrigger Extending s ≤35
beam Simultaneously
  Retracting ≤30
  Simultaneously
Outrigger Extending ≤40
jack At the same time
  Retracting ≤35
  At the same time
Hoisting speed Main winch No load m/min ≥130
 
(one line Auxiliary winch No load ≥130
Exterior noise amount dB (A) ≤118
Noise stage at seated place dB (A) ≤90

Photos for Reference

Business Data

 

The use of original gear manufacturer’s (OEM) part quantities or trademarks , e.g. CASE® and John Deere® are for reference purposes only and for indicating solution use and compatibility. Our organization and the outlined substitute areas contained herein are not sponsored, accredited, or produced by the OEM.

China best torque limiter factory manufacturer & supplier 50t Qy50K-2 Hydraulic Growth Truck Crane for Mobile Lifting with prime high quality & greatest value

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We – EPG Group the largest gearbox & motors , torque limiter couplings and gears manufacturing facility in China with 5 diverse branches. For a lot more specifics: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778083988828

 

New cell sixteen ton hydraulic arm crane telescopic growth truck mounted crane price 

Crane is a variety of device commonly employed in ports, workshop, electrical and constructional internet site. The crane is a basic identify of hoisting equipment. Often known as crane is vehicle crane, crawler crane and tyre crane. Crane is employed in hoisting products,emergency rescue, lifting, machinery, the rescue.
Foremost overall performance: the increase size in full extension is 32m, the functionality leading in 5%. The grade potential is 40%, which make the device have very good road adaptability.

The innovative jib system adopts embedded block, plug-in boom head and octagon jib, which has outstanding lifting performance and risk-free and trustworthy lifting work.

Undertake the new hydraulic motor with massive torque starting up point, ma ept the secondary lifting safer.

Six distinctive producing systems make sure the high high quality.

The control system is optimized by 8 patents lifting, rotation, and luffing are easy and trustworthy.

Eight patent strategies ensure the smooth, large efficiency and power conservation of the lifting, rotation, and luffing techniques.

The special stretch and retract approach helps prevent the misoperation the extend and retract of the boom is safer and a lot more reputable.

The torque limiter adopts colorful Lcd display, recognizing the intelligence of the failure diagnosis. The precision is ahead of the industry.

The special stretch and retract technique avoids the bend of the main pipe and cylinder and the split of the increase brought on by misoperation, bettering the basic safety of the functions.

Six special systems source the quality assurance, and make the products maintain a higher price.

The exclusive U increase and plug-in boom head make the load-carrying potential a lot more well balanced, and lift more effortlessly.

The humanity layout helps make the taxi and manage cab more roomy, and simple to run.

 

Truck Crane Parameter 

Model HW-Z16
Total Mass 16150KG
Dimension 10110*2350*3350mm
Max.lifting weight 16000KG
Max.lifting height 34m
Boom Duration 42m
Main hook solitary load  16000KG
Main hook single elevating velocity 60M/MIN
Auxiliary hook one load 1600KG
Auxiliary hook one elevating pace 80M/MIN
Engine model 4108#
Power 88kw
Outrigger foundation A torque limiter protects mechanical products, or its perform, from injury by mechanical overload. A torque limiter could restrict the torque by slipping a friction plate clutch or disconnect the load fully. The motion of a torque limiter is useful to restrict any harm to the device or item due to mechanical failures or product jams in the device. Torque limiters are typically set up on the output side of gear reducers to shield the gear set. See much more at Style Planet Movement Management Tips Safeguarding From Mechanical Overload Harm.6.5*6.8m
Tires 900-twenty with spare tires
Driving speed 75km/h

Truck Crane Photos 

 Our business

 

The use of authentic equipment manufacturer’s (OEM) part figures or logos , e.g. CASE® and John Deere® are for reference functions only and for indicating product use and compatibility. Our business and the listed replacement parts contained herein are not sponsored, accredited, or manufactured by the OEM.

New  shop  made in China - replacement parts -  in Valledupar Colombia  Mobile 16 Ton Hydraulic Arm Crane Tel: +86~13083988828escopic Boom Truck Mounted Crane Price with top quality

New  shop  made in China - replacement parts -  in Valledupar Colombia  Mobile 16 Ton Hydraulic Arm Crane Tel: +86~13083988828escopic Boom Truck Mounted Crane Price with top quality

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We – EPG Group the biggest gearbox & motors , torque limiter couplings and gears factory in China with 5 distinct branches. For a lot more details: Cell/whatsapp/telegram/Kakao us at: 0086~13083988828 13858 Electric torque limiters provide numerous rewards. Their compact building and the use of large top quality materials will support you to guarantee productive safety of your machine against momentary overload problems. Why a Torque Limiter? The aim is to guarantee successful protection of man and device from momentary overload problems. A Torque limiter is a mechanical security device which, when an overload transpires, the load separates from the push. The limiters with rotating components (balls or rollers) can be supplied with a limit change. This permits manage of the motor push method and to end the equipment e.g. Unexpected emergency Stop.117778083988828

Cellular 16ton hydraulic arm crane telescopic boom truck mounted crane 

Crane is a type of device widely utilized in ports, workshop, electrical and constructional web site. The crane is a common name of hoisting device. Usually referred to as crane is vehicle crane, crawler crane and tyre crane. Crane is utilised in hoisting equipment,emergency rescue, lifting, machinery, the rescue.
Leading performance: the boom length in complete extension is 32m, the performance top in 5%. The quality potential is 40%, which make the equipment have excellent highway adaptability.

The innovative jib method adopts embedded block, plug-in boom head and octagon jib, which has outstanding lifting functionality and risk-free and dependable lifting perform.

Undertake the new hydraulic motor with huge torque beginning position, ma ept the secondary lifting safer.

6 exclusive producing technologies make sure the high top quality.

The control program is optimized by 8 patents lifting, rotation, and luffing are simple and trustworthy.

Eight patent techniques make sure the sleek, higher performance and energy conservation of the lifting, rotation, and luffing methods.

The distinctive extend and retract technique prevents the misoperation the stretch and retract of the boom is safer and far more reputable.

The torque limiter adopts colourful Lcd screen, realizing the intelligence of the failure prognosis. The precision is in advance of the sector.

The unique extend and retract technique avoids the bend of the main pipe and cylinder and the crack of the growth caused by misoperation, enhancing the safety of the functions.

Six exclusive technologies supply the top quality assurance, and make the merchandise maintain a large value.

The unique U growth and plug-in boom head make the load-carrying ability far more well balanced, and lift far more efficiently.

The humanity design and style tends to make the taxi and handle cab more spacious, and easy to run.

 

Truck Crane Parameter 

Model HW-Z16
Total Mass 16150KG
Dimension 10110*2350*3350mm
Max.lifting fat 16000KG
Max.lifting height 34m
Boom Length 42m
Main hook one load  16000KG
Main hook single elevating pace 60M/MIN
Auxiliary hook one load 1600KG
Auxiliary hook single elevating speed 80M/MIN
Engine model 4108#
Power 88kw
Outrigger foundation 6.5*6.8m
Tires 900-20 with spare tires
Driving speed 75km/h

Truck Crane Photos 

 Our company

 

The use of original tools manufacturer’s (OEM) portion numbers or emblems , e.g. CASE® and John Deere® are for reference purposes only and for indicating solution use and compatibility. Our company and the shown replacement parts contained herein are not sponsored, approved, or manufactured by the OEM.

Mobile  factory  made in China - replacement parts -  in Kathmandu Nepal  16ton Hydraulic Arm Crane Tel: +86~13083988828escopic Boom Truck Mounted Crane with top quality

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We – EPG Group the largest gearbox & motors , torque limiter couplings and gears factory in China with 5 distinct branches. For more specifics: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778083988828

a hundred ton EPT Hydraulic Cell Tel: +86~13083988828escopic Growth Truck Mounted Crane QY100K-I

1. Six axles 3 for steering 3 for driving
two. Volvo engine for uperstructure, EURO III Mercedes-Benz dual-method handle (original) EFI Motor for carrier
3. Transmission: ZF Germany, handle space on the elevation-20 °
four. Extended 5-area U-shape mast booms and two jibs, twin unbiased winch, Hirschman force limiter, Electric pilot management technique
five. Centralized lubrication techniques, total head cab, power ratio of pilot,
six. PLC built-in management technique, heating and cooling air-conditioning on and off.
7. Rear Look at Exhibit
eight. Complete dimension(mm): 15230*3000*3860
seven. Max. Procedure weight(Kg): 65000
Extensive cab
5-section U section increase
One cylinder luffing and double-winch
Handbook mechanical management
Spacious and luxury streamline taxi
U boom method
Constantly improve the growth section, totally releasing the carrying capability of the plates, which tends to make the lifting more trustworthy and safer.
Compact boom head
Increase the jib duration, which can prolong the wor ept radius to the most.
Hydraulic pipeline
The pipeline adopts substantial-precision chilly drawing metal pipe, matching with the reducing ferrule, which is good bathroom ept and straightforward to maintain.
Running taxi
It has huge place and vast sights. The control levers and instrument buttons are at hand.
Torque limiter
The vibrant Liquid crystal display display of the torque limiter can exhibits all the crucial running information.
Motor
Affordable matching, power effectiveness and environmental security, and powerful powTorque values can be modified in the area, nevertheless the torque limiter need to be disassembled and the springs changed to obtain the new torque value.er fulfill the affordable running of the needed electrical power.

Classification Item Unit Parameter
Outline Dimensions Overall length mm 15600
Overall width mm 3000
Overall top mm 3850
Wheel base mm 1420+2420+1800+1420+1505
Track mm 2610/2610/2610/2315/2315/2610
Front overhang mm 2550
Rear overhang mm 2225
Total car mass in journey configuration kg 54900
Axle load 1st Axle kg 8000
2nd Axle kg 8000
3rd Axle kg 7900
4th Axle kg 12000
fifth Axle kg 12000
sixth Axle kg 7000
Power Superstructure motor Design   TAD720VE TAD750VE
Rated energy kW/(r/min) 174/2300 181/2300
Rated torque N. m/(r/min) 854/1400 1050/1500
Carrier engine Model   OM460LA. E3A/one
Rated energy kW/(r/min) 360/1800
Rated torque N. m/(r/min) 2200/1300
Travel Overall performance Max. journey pace km/h 80
Min. travel velocity km/h 0.five
Min. turning diameter m 24
Min. turning diameter at boom suggestion m 26.six
Min. ground clearance mm 300
Approach angle ° 20
Departure angle ° 14
Bra ept length (at 30 km/h ) m ≤ ten
Max. grade potential % 40
Oil intake for every 100km L 70
Noise Exterior sounds amount throughout acceleration touring dB (A) ≤ 88
Noise degree at seated situation dB (A) ≤ ninety

Remember to speak to: 
 
Cellular/+86~13083988828 13858117778705652725 
 

 

The use of first products manufacturer’s (OEM) portion figures or emblems , e.g. CASE® and John Deere® are for reference reasons only and for indicating solution use and compatibility. Our company and the listed substitution parts contained herein are not sponsored, approved, or manufactured by the OEM.

100  factory  made in China - replacement parts -  in Monterrey Mexico  Ton EPT MG Hydraulic Mobile Tel: +86~13083988828escopic Boom Truck Crane Qy100K-I with top quality

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EPT supplier made in China – replacement parts – in Taoyuan China, Taiwan Province of China MG 12ton Hydraulic Telescopic Boom Crane Truck Mounted Crane with Ce with top quality

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We – EPG Team the greatest gearbox & motors , torque limiter couplings and gears manufacturing facility in China with 5 various branches. For far more information: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778083988828


EPT 12ton Hydraulic Tel: +86~13083988828escopic Growth Crane Truck Mounted Crane with Ce (SQ12SK3Q)

one.Throttle Management Method
Changing the sort of prior manipulation and throttle operation independently,Realization of the bilateral handle synchronous and driving throttle acceleration and deceleration routinely, thanks to the velocity change constant,it can easily to have out the lifting operate.

two.Conclude place computerized hook gadget
Optimum savings in preparation time prior to and after operation, to make sure that customer’s vehicle could be in a driving point out in the shortest time, and avoid crane harm incident caused by hoist swing to boost the basic safety of driving.

3.Hoisting overwinder unit
If a person is negligent or unfamiliar with the operation of lifting hooks,the hoisting overwinder unit will end hook raise in time, to avert the basic safety of individual and house induced by fracture of wire rope.

4.Slewing loc ept device
Slewing loc ept device can make sure that the lifting arm does not sway simply because of the centrifugal pressure for the duration of the driving and steering method of the vehicle,to keep away from all kinds of incidents brought on by swaying.

five.Torque limiter
It can pick torque restrict overload defense device to stop users since of negligence or unfamiliar with the lifting operation theory of overload operation, therefore creating the motor vehicle rollover and crane damage incidents.

[Product Parameter]

Description Device Parameter value
Max Lifting Moment t*m 30
Max Lifting Capacity kg 12000
Boom Length m five.26~twelve.ninety one 5.64~14.45
Max Lifting Height m fourteen.seven sixteen.two
Derricking range ° 0~75°
Outrigger span mm 2270~5270 2310~5700
Dimensions(length×width×height) mm 5598×2490×3306 5677×2576×3290
Crane Weight kg 4316 4460

[Merchandise Photograph]

[Organization Details]

The use of authentic gear manufacturer’s (OEM) part quantities or logos , e.g. CASE® and John Deere® are for reference reasons only and for indicating product use and compatibility. Our companyshock guardIndustries that frequently use Torque Limiters to shield their equipment incorporate: Common machining and manufacturing Packaging and assembly solutions Printing and converting industries Textile production Forest goods Distinct programs for Torque Limiters incorporate: Conveyors: If the conveying method jams, the Torque Limiter will disconnect the driving motor from the conveyor to safeguard vital factors. Gearboxes: This additional security system helps prevent extra torque from reaching susceptible elements in the driven program. Turbines: Energy outages can lead to sporadic moments of excess torque. A Torque Limiter can avert that force from damaging the gear. Motors: The Torque Limiter can disengage the motor shaft from the driven program in the occasion it generates too significantly torque for the equipment to take care of. and the shown replacement areas contained herein are not sponsored, accepted, or made by the OEM.

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EPT  supplier  made in China - replacement parts -  in Taoyuan China, Taiwan Province of China  MG 12ton Hydraulic Tel: +86~13083988828escopic Boom Crane Truck Mounted Crane with Ce  with top quality