Product Description
Product Description
| Capacity | Stroke | Model | Min Height | Outside Diameter | Effective Area | Oil Capacity | Saddle Diameter | Weight |
| (Ton) | (mm) | (mm) | (mm) | (cm²) | (cm³) | (mm) | (Kg) | |
| 50 | 50 | CLL502 | 164 | 125 | 70.9 | 355 | 71 | 15 |
| 50 | 100 | CLL5O4 | 214 | 125 | 70.9 | 709 | 71 | 20 |
| 50 | 150 | CLL506 | 264 | 125 | 70.9 | 1064 | 71 | 25 |
| 50 | 200 | CLL508 | 314 | 125 | 70.9 | 1418 | 71 | 30 |
| 50 | 250 | CLL5571 | 364 | 125 | 70.9 | 1773 | 71 | 35 |
| 50 | 300 | CLL5012 | 414 | 125 | 70.9 | 2127 | 71 | 40 |
| 100 | 50 | CLL1002 | 187 | 165 | 132.7 | 664 | 71 | 30 |
| 100 | 100 | CLL1004 | 237 | 165 | 132.7 | 1327 | 71 | 39 |
| 100 | 150 | CLL1006 | 287 | 165 | 132.7 | 1991 | 71 | 48 |
| 100 | 200 | CLL1008 | 337 | 165 | 132.7 | 2654 | 71 | 56 |
| 100 | 250 | CLL1571 | 387 | 165 | 132.7 | 3318 | 71 | 64 |
| 100 | 300 | CLL10012 | 437 | 165 | 132.7 | 3981 | 71 | 73 |
| 150 | 50 | CLL1502 | 209 | 205 | 201 | 1005 | 130 | 53 |
| 150 | 100 | CLL1504 | 259 | 205 | 201 | 2571 | 130 | 66 |
| 150 | 150 | CLL1506 | 309 | 205 | 201 | 3015 | 130 | 78 |
| 150 | 200 | CLL1508 | 359 | 205 | 201 | 4571 | 130 | 92 |
| 150 | 250 | CLL15571 | 409 | 205 | 201 | 5571 | 130 | 104 |
| 150 | 300 | CLL15012 | 459 | 205 | 201 | 6030 | 130 | 117 |
| 200 | 50 | CLL2002 | 243 | 235 | 265. 6 | 1330 | 130 | 83 |
| 200 | 150 | CLL2006 | 343 | 235 | 265.6 | 3989 | 130 | 117 |
| 200 | 250 | CLL2571 | 443 | 235 | 265.6 | 6648 | 130 | 152 |
| 250 | 50 | CLL2502 | 249 | 275 | 366.4 | 1832 | 150 | 116 |
| 250 | 150 | CLL2506 | 349 | 275 | 366.4 | 5496 | 150 | 162 |
| 250 | 250 | CLL25571 | 449 | 275 | 366.4 | 9160 | 150 | 210 |
| 300 | 50 | CLL3002 | 295 | 310 | 456.2 | 2281 | 139 | 173 |
| 300 | 150 | CLL3006 | 395 | 310 | 456.2 | 6843 | 139 | 233 |
| 300 | 250 | CLL3571 | 495 | 310 | 456.2 | 11405 | 139 | 293 |
| 400 | 50 | CLL4002 | 335 | 350 | 559. 9 | 2800 | 159 | 250 |
| 400 | 150 | CLL4006 | 435 | 350 | 559. 9 | 8399 | 159 | 327 |
| 400 | 250 | CLL4571 | 535 | 350 | 559.9 | 13998 | 159 | 402 |
| 500 | 50 | CLL5002 | 375 | 400 | 730. 6 | 3656 | 228 | 367 |
| 500 | 150 | CLL5006 | 475 | 400 | 730.6 | 10967 | 228 | 466 |
| 500 | 250 | CLL5571 | 575 | 400 | 730.6 | 18278 | 228 | 567 |
| 600 | 50 | CLL6002 | 395 | 430 | 855.3 | 4277 | 194 | 446 |
| 600 | 150 | CLL6006 | 495 | 430 | 855.3 | 12830 | 194 | 562 |
| 600 | 250 | CLL6571 | 595 | 430 | 855.3 | 21383 | 194 | 679 |
| 800 | 50 | CLL8002 | 455 | 505 | 1176.9 | 5882 | 224 | 709 |
| 800 | 150 | CLL8006 | 555 | 505 | 1176.9 | 17645 | 224 | 870 |
| 800 | 250 | CLL8571 | 655 | 505 | 1176.9 | 29408 | 224 | 1571 |
| 1000 | 50 | CLL10002 | 495 | 560 | 1466.4 | 7329 | 360 | 949 |
| 1000 | 150 | CLL10006 | 595 | 560 | 1466. 4 | 21986 | 360 | 1141 |
| 1000 | 250 | CLL10571 | 695 | 560 | 1466.4 | 36643 | 360 | 1333 |
Company Profile
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FAQ
Q: How to order?
A: Inquire with us→ sample customization→ use scenario inform→ receive our product design recommendation→ negotiate details→ confirm the sample→ CHINAMFG the contract/deposit→mass production→ the goods are ready→ balance/delivery→ further cooperation.
Q: How about the sample order?
A: We can provide the sample price, please contact us for details.
Q: Which shipping method is available?
A: By sea, by air, or by express (DHL, UPS, FedEx). Other shipping methods are also available, please contact us for details.
Q: How long is the delivery [production] and shipment?
A: The delivery time depends on the quantity you ordered. Shipped from the factory, within 3 days for standard parts and within 10 days for non-standard parts.
Q: My package is missing some products, what can I do?
A: Please contact our support team, we will confirm the contents of your order with the packaging, and compensate for the shipment. We apologize for the inconvenience.
Q: How to confirm the payment?
A: We accept T/T payment method. The first type is 30% deposit order confirmed, and the remaining 70% is paid before shipment, and the second type is 100% paid before shipment. Other payment methods are also acceptable, please contact us before you pay by other payment methods.
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| Certification: | CE, ISO9001 |
|---|---|
| Pressure: | High Pressure |
| Work Temperature: | Normal Temperature |
| Acting Way: | Single Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Switching Type |
| Customization: |
Available
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|---|

How does a single-acting hydraulic cylinder fit into various hydraulic system designs?
A single-acting hydraulic cylinder can be integrated into various hydraulic system designs, offering versatility and functionality. Here’s a detailed explanation:
Hydraulic systems are widely used in numerous industries for various applications, including heavy machinery, construction equipment, manufacturing processes, and automation systems. Single-acting hydraulic cylinders play a crucial role in these hydraulic systems, providing linear force and motion. Here are the key points on how single-acting hydraulic cylinders fit into various hydraulic system designs:
1. Force Generation: Single-acting hydraulic cylinders are designed to generate force in one direction, typically during extension. They convert the hydraulic pressure supplied by the hydraulic system into linear force, enabling the system to perform tasks such as lifting, pushing, pulling, or clamping. The force generated by the single-acting hydraulic cylinder can be precisely controlled and adjusted, making it suitable for a wide range of applications.
2. Actuation Mechanism: Single-acting hydraulic cylinders serve as actuation mechanisms in hydraulic systems. They convert hydraulic energy into mechanical energy, allowing the system to perform the desired tasks. By utilizing the hydraulic pressure to extend or retract the piston, the single-acting hydraulic cylinder enables the system to move or apply force to the targeted components or objects.
3. Compact Design: Single-acting hydraulic cylinders have a relatively compact design, making them adaptable to various hydraulic system layouts and configurations. Their compact size allows for flexible installation, enabling integration into space-limited environments or complex machinery. The compact design of single-acting hydraulic cylinders also enhances the efficiency and effectiveness of hydraulic system designs.
4. Integration with Valves and Control Systems: Single-acting hydraulic cylinders can be easily integrated with valves and control systems within hydraulic systems. Valves control the flow and direction of hydraulic fluid to the cylinder, enabling precise control over the cylinder’s movement and force application. Control systems, such as pressure regulators or proportional control valves, can be employed to adjust and fine-tune the hydraulic pressure supplied to the cylinder, ensuring accurate and controlled operation. The integration of single-acting hydraulic cylinders with valves and control systems allows for the customization and optimization of hydraulic system designs.
5. System Customization: Single-acting hydraulic cylinders offer customization options to fit various hydraulic system designs. The cylinder’s stroke length, bore size, mounting configurations, and accessories can be tailored to meet specific requirements. This customization ensures compatibility with the overall hydraulic system design and optimizes the performance of the system in terms of force output, speed, and precision.
6. Safety Considerations: Single-acting hydraulic cylinders can incorporate safety features such as pressure relief valves, burst discs, or emergency stop mechanisms. These safety measures help prevent excessive force application, system overpressure, or equipment damage, providing a higher level of safety in hydraulic system designs.
Single-acting hydraulic cylinders are employed in a wide range of hydraulic system designs, including hydraulic presses, lifting equipment, material handling systems, construction machinery, agricultural machinery, and more. Their adaptability, force generation capabilities, compact design, integration with valves and control systems, customization options, and safety features make them valuable components in hydraulic system designs across various industries.

Can single-acting hydraulic cylinders be applied in marine and offshore equipment?
Yes, single-acting hydraulic cylinders can be applied in marine and offshore equipment. Here’s a detailed explanation:
Marine and offshore equipment operate in challenging environments, including exposure to saltwater, high humidity, and extreme weather conditions. Single-acting hydraulic cylinders offer several advantages that make them suitable for use in such applications. Here are some key points on the application of single-acting hydraulic cylinders in marine and offshore equipment:
1. Corrosion Resistance: Marine and offshore environments are highly corrosive due to the presence of saltwater. Single-acting hydraulic cylinders can be manufactured using materials that provide excellent corrosion resistance, such as stainless steel or corrosion-resistant coatings. This ensures the longevity and reliability of the cylinders, even in harsh marine conditions. The resistance to corrosion helps prevent premature failure and reduces maintenance requirements.
2. Compact Design: Space is often limited on marine vessels and offshore platforms. Single-acting hydraulic cylinders have a compact design, allowing them to be installed in confined spaces and integrated into the equipment efficiently. The compact size also contributes to weight savings, which is crucial in marine and offshore applications where weight restrictions are common.
3. Load Handling: Single-acting hydraulic cylinders are capable of handling heavy loads, making them suitable for various marine and offshore equipment applications. They can be used to operate cranes, winches, lifting mechanisms, and other load-handling systems. The cylinders’ ability to generate high force in one direction provides efficient load lifting and control, contributing to the overall productivity and safety of marine and offshore operations.
4. Shock and Vibration Resistance: Marine and offshore equipment are subjected to significant shock and vibration during operation. Single-acting hydraulic cylinders are designed to withstand these dynamic forces. They can be equipped with features like shock absorbers, dampeners, or cushioning mechanisms to minimize the impact of shocks and vibrations. This helps protect the cylinders from damage and ensures reliable performance in demanding marine and offshore environments.
5. Environmental Sealing: Single-acting hydraulic cylinders can be equipped with environmental sealing measures to protect them from water ingress, dust, and other contaminants. Seals and gaskets are used to create a barrier between the cylinder’s internal components and the external environment. This sealing prevents water and contaminants from compromising the cylinder’s performance and extends its service life in marine and offshore applications.
6. Safety Considerations: Marine and offshore operations prioritize safety. Single-acting hydraulic cylinders can incorporate safety features such as pressure relief valves, emergency stop mechanisms, or fail-safe systems. These features help prevent overloading, sudden movements, or system failures, ensuring the safety of personnel and equipment in marine and offshore environments.
When selecting single-acting hydraulic cylinders for marine and offshore equipment, it is important to consider factors such as load requirements, environmental conditions, industry standards, and certifications. Compliance with relevant regulations and guidelines is essential to ensure the safe and reliable operation of the equipment.
In summary, single-acting hydraulic cylinders can be successfully applied in marine and offshore equipment due to their corrosion resistance, compact design, load handling capabilities, shock and vibration resistance, environmental sealing, and safety considerations. These features make them well-suited for the demanding conditions encountered in marine and offshore operations.

How does a single-acting hydraulic cylinder manage variations in load capacity and weight?
A single-acting hydraulic cylinder is designed to effectively manage variations in load capacity and weight in hydraulic systems. Here’s a detailed explanation:
1. Adjustable Force Output: Single-acting hydraulic cylinders allow for adjustable force output, which enables them to handle variations in load capacity and weight. The force generated by the cylinder can be controlled by adjusting the hydraulic pressure supplied to the pressure chamber. By increasing or decreasing the pressure, the cylinder can generate the necessary force to accommodate different loads and weight requirements.
2. Mechanical Advantage: Single-acting hydraulic cylinders utilize the mechanical advantage of the piston design to manage variations in load capacity and weight. The piston has a larger effective area on the pressure side and a smaller effective area on the return side. This size difference creates a mechanical advantage, amplifying the force output compared to the hydraulic pressure input. As a result, the cylinder can generate a greater force to handle heavier loads.
3. Load-Sensing Control: In some hydraulic systems, load-sensing control mechanisms can be incorporated to further manage variations in load capacity and weight. Load-sensing systems continuously monitor the load on the cylinder and adjust the hydraulic pressure accordingly. This ensures that the cylinder generates the appropriate force based on the actual load, optimizing efficiency and preventing overloading or underutilization.
4. Customizable Cylinder Design: Single-acting hydraulic cylinders can be customized in terms of size, dimensions, and force capacity to match specific load requirements. By selecting the appropriate cylinder size and specifications, variations in load capacity and weight can be effectively managed. Customization ensures that the cylinder is appropriately sized and capable of generating the necessary force to handle the expected loads.
5. System Design Considerations: Proper system design considerations play a crucial role in managing variations in load capacity and weight. The hydraulic system should be designed with the appropriate pump capacity, valve selection, and overall system configuration to ensure optimal performance. By considering the anticipated load variations and weight requirements, the hydraulic system can be designed to accommodate these variations effectively.
6. Safety Factors and Overload Protection: Single-acting hydraulic cylinders are typically designed with safety factors to provide a margin of safety and accommodate variations in load capacity and weight. These safety factors help prevent overloading and ensure the cylinder can handle unexpected increases in load or weight. Additionally, incorporating overload protection mechanisms, such as relief valves or load-limiting devices, adds an extra layer of protection against excessive loads.
In summary, a single-acting hydraulic cylinder manages variations in load capacity and weight through adjustable force output, mechanical advantage, load-sensing control, customizable cylinder design, system design considerations, safety factors, and overload protection. These features and considerations allow the cylinder to effectively adapt to changes in load requirements and ensure reliable and efficient operation within a hydraulic system.


editor by CX 2023-12-31