Product Description
FC Type telescopic cylinder for dump truck and trailer body
1. Company Information
Found 1995,w are 1 of the biggest hydraulic cylinder manufacturer in China, specialized in design, R & D and manufacturing of hydraulic machinery products etc, with its annual production capaciy of 2 square meters.There are 700 sets of mnufacturing equipment .
Product Description
2. hydraulic telescopic cylinder for dump truck drawing and parameter
FC type
ITEM | MODEL NO. | # of Stages | Largest Moving Stage Diameter(mm) | stroke(mm) | the largest sleeve OD(mm) | mounting distance(mm) |
1 | WTHY FC-3-110-3205 | 3 | 110 | 3205 | 168 | 343 |
2 | WTHY FC-3-110-3460 | 3 | 110 | 3460 | 168 | 343 |
3 | WTHY FC-3-129-2980 | 3 | 129 | 2980 | 218 | 343 |
4 | WTHY FC-3-129-3205 | 3 | 129 | 3205 | 218 | 343 |
5 | WTHY FC-3-129-3460 | 3 | 129 | 3460 | 218 | 343 |
6 | WTHY FC-3-129-3880 | 3 | 129 | 3880 | 218 | 343 |
7 | WTHY FC-3-129-4270 | 3 | 129 | 4270 | 218 | 343 |
8 | WTHY FC-4-129-4280 | 4 | 129 | 4280 | 218 | 343 |
9 | WTHY FC-4-129-4280 | 4 | 129 | 4280 | 218 | 343 |
10 | WTHY FC-4-129-5180 | 4 | 129 | 5180 | 218 | 343 |
11 | WTHY FC-3-149-4270 | 3 | 149 | 4270 | 244 | 343 |
12 | WTHY FC-4-149-3680 | 4 | 149 | 3680 | 218 | 343 |
13 | WTHY FC-4-149-3980 | 4 | 149 | 3980 | 218 | 343 |
14 | WTHY FC-4-149-4280 | 4 | 149 | 4280 | 244 | 343 |
15 | WTHY FC-4-149-4620 | 4 | 149 | 4620 | 244 | 343 |
16 | WTHY FC-4-149-4940 | 4 | 149 | 4940 | 244 | 343 |
17 | WTHY FC-4-149-5180 | 4 | 149 | 5180 | 244 | 343 |
18 | WTHY FC-4-149-5460 | 4 | 149 | 5460 | 244 | 343 |
19 | WTHY FC-4-169-4280 | 4 | 169 | 4280 | 244 | 343 |
20 | WTHY FC-4-169-4620 | 4 | 169 | 4620 | 244 | 343 |
21 | WTHY FC-4-169-4940 | 4 | 169 | 4940 | 244 | 343 |
22 | WTHY FC-4-169-5180 | 4 | 169 | 5180 | 244 | 343 |
23 | WTHY FC-4-169-5460 | 4 | 169 | 5460 | 244 | 343 |
24 | WTHY FC-5-169-5355 | 5 | 169 | 5355 | 244 | 343 |
25 | WTHY FC-5-169-5780 | 5 | 169 | 5780 | 244 | 343 |
26 | WTHY FC-5-169-6180 | 5 | 169 | 6180 | 244 | 343 |
27 | WTHY FC-5-169-6830 | 5 | 169 | 6830 | 244 | 343 |
28 | WTHY FC-5-169-7130 | 5 | 169 | 7130 | 244 | 343 |
29 | WTHY FC-5-169-7630 | 5 | 169 | 7630 | 244 | 343 |
30 | WTHY FC-5-169-8130 | 5 | 169 | 8130 | 244 | 343 |
31 | WTHY FC-5-169-9030 | 5 | 169 | 9030 | 244 | 343 |
32 | WTHY FC-5-169-9530 | 5 | 169 | 9530 | 244 | 343 |
33 | WTHY FC-4-191-5460 | 4 | 191 | 5460 | 274 | 343 |
34 | WTHY FC-5-191-5780 | 5 | 191 | 5780 | 274 | 343 |
35 | WTHY FC-5-191-6180 | 5 | 191 | 6180 | 274 | 343 |
36 | WTHY FC-5-191-7130 | 5 | 191 | 7130 | 274 | 343 |
37 | WTHY FC-5-191-7630 | 5 | 191 | 7630 | 274 | 343 |
38 | WTHY FC-5-191-8130 | 5 | 191 | 8130 | 274 | 343 |
39 | WTHY FC-5-191-9030 | 5 | 191 | 9030 | 274 | 343 |
40 | WTHY FC-5-191-9530 | 5 | 191 | 9530 | 274 | 343 |
41 | WTHY FC-5-214-7610 | 5 | 214 | 7610 | 274 | 343 |
42 | WTHY FC-5-214-9030 | 5 | 214 | 9030 | 274 | 343 |
FE type
ITEM | MODLE NO. | # of Stages | Largest Moving Stage Diameter(mm) | stroke(mm) | mounting distance(mm) |
1 | WTHY FE-3-110-3205 | 3 | 110 | 3205 | 1449 |
2 | WTHY FE-3-110-3460 | 3 | 110 | 3460 | 1609 |
3 | WTHY FE-3-129-3460 | 3 | 129 | 3460 | 1449 |
4 | WTHY FE-3-129-3880 | 3 | 129 | 3880 | 1609 |
5 | WTHY FE-3-149-2900 | 3 | 149 | 2900 | 1320 |
6 | WTHY FE-3-149-3200 | 3 | 149 | 3200 | 1420 |
7 | WTHY FE-3-149-3500 | 3 | 149 | 3500 | 1520 |
8 | WTHY FE-3-149-3880 | 3 | 149 | 3880 | 1644 |
9 | WTHY FE-4-149-4280 | 4 | 149 | 4280 | 1450 |
10 | WTHY FE-4-149-4940 | 4 | 149 | 4940 | 1529 |
11 | WTHY FE-4-149-4620 | 4 | 149 | 4620 | 1484 |
12 | WTHY FE-4-169-4280 | 4 | 169 | 4280 | 1394 |
13 | WTHY FE-4-169-4450 | 4 | 169 | 4450 | 1437 |
14 | WTHY FE-4-169-4620 | 4 | 169 | 4620 | 1479 |
15 | WTHY FE-4-169-4940 | 4 | 169 | 4940 | 1529 |
16 | WTHY FE-4-169-5000 | 4 | 169 | 5000 | 1574 |
17 | WTHY FE-4-169-5180 | 4 | 169 | 5180 | 1604 |
18 | WTHY FE-5-169-5355 | 5 | 169 | 5355 | 1394 |
19 | WTHY FE-5-169-5780 | 5 | 169 | 5780 | 1559 |
20 | WTHY FE-5-169-6180 | 5 | 169 | 6180 | 1527 |
21 | WTHY FE-5-169-6480 | 5 | 169 | 6480 | 1604 |
22 | WTHY FE-5-169-6830 | 5 | 169 | 6830 | 1674 |
23 | WTHY FE-5-169-7130 | 5 | 169 | 7130 | 1769 |
24 | WTHY FE-5-191-6180 | 5 | 191 | 6180 | 1527 |
25 | WTHY FE-5-191-9030 | 5 | 191 | 9030 | 2177 |
26 | WTHY FE-6-191-7420 | 6 | 191 | 7420 | 1677 |
27 | WTHY FE-5-214-6830 | 5 | 214 | 6830 | 1662 |
28 | WTHY FE-5-214-7130 | 5 | 214 | 7130 | 1722 |
3. hydraulic telescopic cylinder for dump truck produce line
700 sets manufacturing equipment,such as cold drawing production line ,heat treatment production line ,surface treatment production line,testing equipment,various digital-control machining equipment,gantry style linear electroplating production line.
4. hydraulic telescopic cylinder for dump truck quality guarantee system
Program before Delivery
1). Trial Operation Test
2). Start-up Pressure Test
3). Pressure-Tight Test
4). Leak Test
5). Full Stroke Test
6). Buffer Test
7). Testing the Effect of Limit
8). Load Efficiency Test
9). Reliability Test
Every piece of hydraulic cylinder are tested and will send out only after they are pasted the each test.
Our company has abundant technical force and perfect testing means. By making wide technical and business cooperation with many related enterprises, universities, colleges and institutes both at home and abroad, and employing senior engineers and software engineers, we have greatly strengthened and improved our designing, processing, and testing abilities.
5. After-service
1).Pre-sale service: Keep communicating with the truck manufacturers , including selection of product model , design of hydraulic system, test of performance and analysis of the accident. Once the problems occur, we will solve them immediately together with truck manufacturers .
2).The sale service: Provide training and technical support for users.
3).After-sale service: Solve the problem firstly, then analyse responsibility ; Replace the system components immediately if any need.
4). 24 hours telephone service hotline.
6.Exhibition and partner
7. FAQ
Q1:What's the brand name of your products ?
A:Generally,we use our own brand "WTJX",OEM is also available as required.
Q2:Hydraulic cylinder internal leakage?
A: There are 3 main reasons causing internal leakage :Overload,polishing is not well controlled,bad seal kits.As is known to all,vehicles in China are often overload,our products all designed to bear the overload power.We have numerical control machine to assure the polish processing .And we use the imported seals to meet customers' demands.
Q3:Does your piston rod get ruptured easily?
A: Hard chrome plating quenched and tempered 45# steel for piston rod to assure sufficient hardness and toughness.
Q4:Is your design reasonable? What about your product safe coefficient?
A:We have R&D team with abundant design experience. We also established production, education, and research cooperation with universities . Rest assured.
Q5:What about the quality feedback of your products?
A: Guarantee the quality from the raw material. We have cold drawing production line and nickel-chrome electroplating production line , so we can produce cold-drawing pipe and hard-chrome pipe used for hydraulic cylinder. !!!
WE HAVE NEVER RECEIVED EVEN ONCE QUALITY COMPLAINT FOR MANY YEARS OF INTERNATIONAL TRADE.
Q6:Is the sample free?
A:Yes.In our acceptable range, we can offer a sample by charging freight. And we will return the fee after you place bulk order.
Q7:How about the delivery time?
A: Over 700 sets advanced equipments to meet customer's large demand in short delivery time.Generally ,it's 20 days.
Q8:What 's the after-service?
A:If the quality can't meet your requirement ,we will pay all your lost and offer technical support to solve your problem!!!
Material: | Steel |
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Usage: | |
Structure: | Telescopic Cylinder |
Power: | Hydraulic |
Standard: | Standard |
Pressure Direction: | Single-acting Cylinder |
Customization: |
Available
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How does a lift cylinder contribute to energy-efficient lifting?
A lift cylinder plays a significant role in promoting energy-efficient lifting operations. Here's an explanation of how lift cylinders contribute to energy efficiency:
1. Hydraulic System Efficiency:
Lift cylinders are commonly used in hydraulic systems, which are known for their high efficiency. Hydraulic systems utilize pressurized fluid to transmit power, allowing for smooth and controlled lifting operations. The hydraulic fluid is circulated within the system, and the lift cylinder converts the pressure of the fluid into mechanical force to lift the load. Compared to other mechanical lifting mechanisms, hydraulic systems, including lift cylinders, experience minimal energy loss due to their efficient power transmission.
2. Power-to-Weight Ratio:
Lift cylinders are designed to have a high power-to-weight ratio. This means that they can generate a substantial lifting force relative to their weight. By utilizing lightweight yet durable materials and optimizing the design, lift cylinders can effectively lift heavy loads while minimizing the amount of energy required. The efficient power-to-weight ratio contributes to energy efficiency by reducing the overall power consumption during lifting operations.
3. Load-Specific Design:
Lift cylinders are often engineered to match the specific load requirements of lifting applications. By customizing the design parameters, such as bore size, stroke length, and operating pressure, lift cylinders can be optimized for the intended load capacities and lifting tasks. This load-specific design ensures that the lift cylinder operates at its optimal efficiency, minimizing energy waste and maximizing the lifting performance.
4. Regenerative Systems:
In certain lifting applications, lift cylinders can be integrated into regenerative systems. Regenerative systems capture and store energy that would otherwise be dissipated as heat during the lowering phase of the lifting operation. This stored energy can then be reused to assist in the subsequent lifting process, reducing the overall energy consumption. Regenerative systems enhance energy efficiency by utilizing the otherwise wasted energy to partially power the lifting operation.
5. Control Systems:
Advanced control systems can be implemented in conjunction with lift cylinders to optimize energy efficiency. These control systems, such as proportional valves or variable-speed drives, allow for precise control of the lifting process. By adjusting the flow rate or speed of the hydraulic fluid, operators can match the power output of the lift cylinder to the specific load requirements, minimizing energy waste and improving overall efficiency.
6. Maintenance and Optimization:
Regular maintenance and optimization of lift cylinders are essential for maintaining energy efficiency. Proper lubrication, seal replacements, and overall system inspections help ensure that the lift cylinder operates at its peak performance. By identifying and addressing any issues or inefficiencies, maintenance practices contribute to energy-efficient lifting operations.
In summary, lift cylinders contribute to energy-efficient lifting through hydraulic system efficiency, a high power-to-weight ratio, load-specific design, regenerative systems, control systems, and proper maintenance. By utilizing these features and practices, lift cylinders help minimize energy consumption and enhance overall lifting efficiency.
Can Lift Cylinders Be Used in Lifting and Lowering Platforms for Accessibility?
Yes, lift cylinders can be used in lifting and lowering platforms to provide accessibility for individuals with mobility challenges. These cylinders play a crucial role in the operation of accessibility platforms, such as wheelchair lifts, vertical platform lifts, or scissor lifts. Here's a detailed explanation of how lift cylinders can be used in lifting and lowering platforms for accessibility:
- Lifting Mechanism:
- Smooth and Controlled Movement:
- Weight Capacity:
- Space Optimization:
- Reliability and Durability:
- Integration with Safety Features:
Lift cylinders serve as the primary lifting mechanism in accessibility platforms. These platforms are designed to raise or lower individuals, including wheelchair users, to different heights, allowing them to access elevated areas or overcome vertical barriers. Lift cylinders are typically integrated into the platform structure and connected to a hydraulic or pneumatic system. When activated, the cylinders extend or retract, lifting or lowering the platform in a controlled manner.
Lift cylinders ensure smooth and controlled movement of the accessibility platform during the lifting and lowering process. The cylinders are designed to provide precise and gradual motion, allowing for safe and comfortable vertical transportation. They can be equipped with features such as flow control valves or adjustable dampening to regulate the speed and prevent abrupt movements. Lift cylinders enable individuals to transition between different levels smoothly and securely.
Accessibility platforms need to support the weight of individuals using them, including wheelchair users and their mobility devices. Lift cylinders are manufactured with varying weight capacities to accommodate different load requirements. The cylinders are designed to withstand the vertical forces exerted on the platform and ensure stability and safety during operation. Lift cylinder specifications, such as bore size, rod diameter, and material strength, are carefully selected to match the intended weight capacity of the accessibility platform.
Lift cylinders contribute to space optimization in accessibility platforms. These cylinders are compact and can be integrated within the platform structure, minimizing the need for additional space or external lifting mechanisms. The compact design of lift cylinders allows for efficient utilization of the available platform area, ensuring that the platform can be installed in various settings, including tight spaces or existing structures where space is limited.
Lift cylinders are engineered for reliability and durability to meet the demanding requirements of accessibility platforms. They are designed to withstand frequent usage, heavy loads, and harsh operating conditions. Lift cylinders undergo rigorous testing and quality control measures to ensure their performance and longevity. Manufacturers often provide warranties and maintenance guidelines to support the long-term reliability and safety of lift cylinders used in lifting and lowering platforms.
Accessibility platforms incorporate various safety features to protect users during vertical transportation. Lift cylinders can be integrated with these safety features to enhance the overall system. For example, pressure relief valves can be installed in the hydraulic system to prevent excessive force in case of a malfunction or overload. Additionally, safety sensors, emergency stop buttons, and interlocks can be connected to the lift cylinder system to provide additional layers of safety and control.
Lift cylinders are essential components in lifting and lowering platforms for accessibility. Their role in providing the lifting mechanism, ensuring smooth and controlled movement, accommodating weight capacity, optimizing space, and contributing to reliability and safety makes them a valuable choice for creating inclusive environments and improving accessibility for individuals with mobility challenges.
What are the safety considerations when using lift cylinders?
When using lift cylinders, it is crucial to prioritize safety to prevent accidents and ensure the well-being of operators and bystanders. Here are some important safety considerations when using lift cylinders:
1. Proper Training:
Operators should receive proper training on the safe operation of lift cylinders. They should be familiar with the equipment's capabilities, limitations, and recommended operating procedures. Training should include understanding hydraulic systems, load capacities, stability factors, and proper positioning techniques.
2. Inspection and Maintenance:
Routine inspection and maintenance of lift cylinders are essential for identifying any potential safety hazards. Regularly check for leaks, damaged components, loose connections, or signs of hydraulic fluid contamination. Ensure that all safety features, such as pressure relief valves and load holding devices, are functioning correctly.
3. Load Capacity and Stability:
It is crucial to know and adhere to the lift cylinder's load capacity limits specified by the manufacturer. Overloading the cylinder can lead to equipment failure, instability, or uncontrolled movements. Properly distribute the load to maintain stability and prevent tipping or imbalance.
4. Secure Mounting:
Ensure that the lift cylinder is securely mounted to the equipment or structure. Follow the manufacturer's guidelines for proper attachment methods and torque specifications. Loose or improper mounting can compromise the stability and safety of the lifting operation.
5. Control of Movement:
Exercise caution and maintain control over the movement of the lift cylinder. Avoid sudden or jerky motions that can destabilize the load or cause the equipment to tip. Use smooth and controlled movements, and be aware of any potential obstacles or hazards in the surrounding area.
6. Personal Protective Equipment (PPE):
Operators and personnel involved in the lifting operation should wear appropriate personal protective equipment, such as safety glasses, gloves, and steel-toed shoes. PPE helps protect against potential hazards, including hydraulic fluid leaks, falling objects, or accidental contact with moving parts.
7. Emergency Procedures:
Establish clear emergency procedures in case of equipment malfunction, hydraulic system failure, or any other unforeseen circumstances. Operators should be trained on how to respond to emergencies, including proper shutdown procedures, communication protocols, and evacuation plans.
8. Environmental Factors:
Consider the environmental conditions in which the lift cylinders are being used. Factors such as extreme temperatures, high humidity, or corrosive atmospheres can affect the cylinder's performance and safety. Take appropriate measures, such as using protective covers or selecting cylinders with suitable material coatings, to mitigate these risks.
In summary, ensuring safety when using lift cylinders involves proper training, regular inspection and maintenance, adhering to load capacity limits, secure mounting, controlled movement, using personal protective equipment, establishing emergency procedures, and considering environmental factors. By following these safety considerations, the risk of accidents or injuries associated with lift cylinder operations can be minimized.
editor by CX 2023-10-26