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 | CLS502A | 128 | 125 | 70.9 | 355 | 71 | 4 |
| 50 | 100 | CLS504A | 178 | 125 | 70.9 | 709 | 71 | 18 |
| 50 | 150 | CLS506 | 228 | 125 | 70.9 | 1064 | 71 | 23 |
| 50 | 200 | CLS508A | 278 | 125 | 70. 9 | 1418 | 71 | 28 |
| 50 | 250 | CLS5571A | 328 | 125 | 70. 9 | 1773 | 71 | 33 |
| 50 | 300 | CLS5012A | 378 | 125 | 70. 9 | 2127 | 71 | 38 |
| 100 | 50 | CLS1002A | 143 | 164 | 132. 7 | 664 | 71 | 24 |
| 100 | 100 | CLS1004 | 193 | 164 | 132.7 | 1327 | 71 | 32 |
| 100 | 150 | CLS1006 | 243 | 164 | 132 7 | 1991 | 71 | 40 |
| 100 | 200 | CLS1008A | 293 | 164 | 132. 7 | 2654 | 71 | 49 |
| 100 | 250 | CLS1571 | 343 | 164 | 132 7 | 3318 | 71 | 58 |
| 100 | 300 | CLS10012 | 393 | 164 | 132.7 | 3981 | 71 | 66 |
| 150 | 50 | CLS1502 | 165 | 209 | 201 | 1005 | 130 | 43 |
| 150 | 100 | CLS1504 | 215 | 209 | 201 | 2571 | 130 | 55 |
| 150 | 150 | CLS1506 | 265 | 209 | 201 | 3015 | 130 | 69 |
| 150 | 200 | CLS1508 | 315 | 209 | 201 | 4571 | 130 | 82 |
| 150 | 250 | CLS15571 | 365 | 209 | 201 | 5571 | 130 | 95 |
| 150 | 300 | CLS15012 | 415 | 209 | 201 | 6030 | 130 | 108 |
| 200 | 50 | CLS2002 | 193 | 235 | 265.9 | 1330 | 130 | 66 |
| 200 | 150 | CLS2006 | 293 | 235 | 265.9 | 3989 | 130 | 101 |
| 200 | 250 | CLS2571A | 393 | 235 | 265.9 | 6648 | 130 | 136 |
| 250 | 50 | CLS2502 | 193 | 275 | 366.4 | 1832 | 150 | 90 |
| 250 | 150 | CLS2506 | 293 | 275 | 366. 4 | 5496 | 150 | 137 |
| 250 | 250 | CLS25571 | 393 | 275 | 366.4 | 9160 | 150 | 184 |
| 300 | 50 | CLS3002 | 235 | 310 | 456.2 | 2281 | 139 | 137 |
| 300 | 150 | CLS3006 | 335 | 310 | 456. 2 | 6843 | 139 | 198 |
| 300 | 250 | CLS3571 | 435 | 310 | 456. 2 | 11405 | 139 | 258 |
| 400 | 50 | CLS4002 | 265 | 350 | 559.9 | 2800 | 159 | 200 |
| 400 | 150 | CLS4006 | 365 | 350 | 559. 9 | 8399 | 159 | 275 |
| 400 | 250 | CLS4571 | 465 | 350 | 559.9 | 13998 | 159 | 352 |
| 500 | 50 | CLS5002 | 295 | 400 | 730. 6 | 3656 | 228 | 289 |
| 500 | 150 | CLS5006 | 395 | 400 | 730. 6 | 10967 | 228 | 390 |
| 500 | 250 | CLS5571 | 495 | 400 | 730. 6 | 18278 | 228 | 489 |
| 600 | 50 | CLS6002 | 310 | 430 | 855. 3 | 4277 | 194 | 350 |
| 600 | 150 | CLS6006 | 410 | 430 | 855.3 | 12830 | 194 | 465 |
| 600 | 250 | CLS6571 | 510 | 430 | 855. 3 | 21383 | 194 | 582 |
| 800 | 50 | CLS8002 | 355 | 505 | 1176.3 | 5882 | 224 | 549 |
| 800 | 150 | CLS8006 | 455 | 505 | 1176.3 | 17645 | 224 | 709 |
| 800 | 250 | CLS8571 | 555 | 505 | 1176.3 | 29408 | 224 | 870 |
| 1000 | 50 | CLS10002 | 385 | 560 | 1465. 7 | 7329 | 360 | 729 |
| 1000 | 150 | CLS10006 | 485 | 560 | 1465.7 | 21986 | 360 | 921 |
| 1000 | 250 | CLS10571 | 585 | 560 | 1465.7 | 36643 | 360 | 1113 |
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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 handle variations in cylinder size and capacity?
A single-acting hydraulic cylinder is designed to handle variations in cylinder size and capacity. Here’s a detailed explanation:
Single-acting hydraulic cylinders are versatile components used in various applications that require linear force and movement. They are available in different sizes and capacities to accommodate a wide range of operational requirements.
Here are some key aspects of how single-acting hydraulic cylinders handle variations in cylinder size and capacity:
1. Bore Diameter: The bore diameter of a single-acting hydraulic cylinder determines its size. Cylinders with larger bore diameters are capable of exerting greater force and accommodating larger loads. Manufacturers offer single-acting cylinders with a range of bore sizes, allowing users to select the appropriate cylinder size based on the desired force output for their specific application.
2. Stroke Length: The stroke length of a single-acting hydraulic cylinder refers to the distance the piston can travel within the cylinder. Longer stroke lengths enable the cylinder to extend or retract over a greater distance. Single-acting cylinders are available with various stroke length options to meet different operational requirements.
3. Piston Rod Diameter: The piston rod diameter of a single-acting hydraulic cylinder affects its strength and load-bearing capacity. Cylinders with thicker piston rods can withstand higher loads and provide increased stability. Manufacturers offer single-acting cylinders with different piston rod diameters to accommodate variations in load capacity.
4. Load Capacity: Single-acting hydraulic cylinders are designed to handle different load capacities. The load capacity is influenced by factors such as the cylinder’s bore diameter, piston rod diameter, and overall construction. Manufacturers provide specifications and guidelines indicating the maximum load capacity that a particular single-acting cylinder can safely handle.
5. Customization: In some cases, users may require single-acting hydraulic cylinders with specific size and capacity requirements that are not readily available as standard options. In such instances, manufacturers often offer customization services, allowing customers to order cylinders tailored to their unique specifications.
It is crucial to select a single-acting hydraulic cylinder with the appropriate size and capacity for a given application. Factors such as the required force output, load capacity, and operational conditions should be considered when choosing the cylinder size and capacity.
In summary, single-acting hydraulic cylinders handle variations in cylinder size and capacity through the availability of different bore diameters, stroke lengths, and piston rod diameters. Manufacturers offer a range of options to meet various load requirements, and customization services are available for unique applications. By selecting the right cylinder size and capacity, users can ensure optimal performance and reliability in their hydraulic systems.

How does a single-acting hydraulic cylinder handle variations in cylinder stroke and extension?
A single-acting hydraulic cylinder is designed to handle variations in cylinder stroke and extension efficiently. Here’s a detailed explanation:
Single-acting hydraulic cylinders operate by applying force in one direction, typically through the extension of the piston. They utilize hydraulic fluid pressure to generate and control the force exerted by the cylinder. Here are some key points on how single-acting hydraulic cylinders handle variations in cylinder stroke and extension:
1. Adjustable Stroke Length: Single-acting hydraulic cylinders can be designed with an adjustable stroke length feature. This allows users to modify the distance the piston can extend, accommodating different requirements and variations in stroke length. By adjusting the cylinder’s stroke, it becomes possible to control the range of motion and extension of the piston, ensuring compatibility with specific applications.
2. Customizable Mounting Options: Single-acting hydraulic cylinders offer various mounting options to facilitate flexible integration into different systems. The mounting configuration can be customized to suit the specific requirements of the application. Different mounting styles, such as flange mounts, foot mounts, or clevis mounts, provide versatility in accommodating variations in cylinder stroke and extension while maintaining stability and proper alignment.
3. Control Valve Regulation: Control valves play a critical role in regulating the flow of hydraulic fluid into and out of the cylinder. By controlling the rate of fluid flow, the valves enable precise control over the extension and retraction of the piston. Adjusting the valve settings allows for fine-tuning of the cylinder’s stroke and extension, ensuring accurate and controlled movement.
4. Position Sensing Devices: Single-acting hydraulic cylinders can be equipped with position sensing devices, such as linear transducers or proximity sensors. These devices provide feedback on the cylinder’s position and extension, allowing for real-time monitoring and control. By detecting and measuring variations in stroke length and extension, position sensing devices enable precise positioning and ensure consistent performance.
5. Cylinder Cushioning: To handle variations in cylinder stroke and extension, single-acting hydraulic cylinders may incorporate cushioning mechanisms. Cushioning helps to dampen the impact during the piston’s approach to the end of its stroke, reducing shock and minimizing the risk of damage. The cushioning feature allows for controlled deceleration and smooth operation, regardless of variations in stroke length.
It is important to consider the specific application requirements and consult the manufacturer’s guidelines to ensure proper handling of variations in cylinder stroke and extension. Manufacturers often provide recommendations and technical specifications to ensure optimal performance and safe operation.
In summary, single-acting hydraulic cylinders handle variations in cylinder stroke and extension through adjustable stroke length, customizable mounting options, control valve regulation, position sensing devices, and cushioning mechanisms. These features allow for precise control, flexibility, and reliable performance in a wide range of applications.

What is the primary function of hydraulic fluid in a single-acting hydraulic cylinder?
The hydraulic fluid in a single-acting hydraulic cylinder serves a crucial primary function. Here’s a detailed explanation:
The primary function of hydraulic fluid in a single-acting hydraulic cylinder is to transmit and distribute force from the hydraulic pump or power source to the cylinder, enabling the conversion of hydraulic pressure into linear force.
1. Force Transmission: Hydraulic fluid acts as a medium for transmitting force from the hydraulic pump or power source to the single-acting cylinder. When the hydraulic pump pressurizes the fluid, the fluid transmits this pressure to the cylinder’s pressure chamber, exerting force on the piston. This force is then transferred to the piston rod, allowing it to extend and generate a linear force.
2. Lubrication: Hydraulic fluid also provides lubrication within the cylinder’s moving parts. As the piston and piston rod move within the cylinder, the hydraulic fluid coats the surfaces, reducing friction and wear. This lubrication ensures smooth operation and prolongs the life of the cylinder components.
3. Heat Dissipation: Single-acting hydraulic cylinders can generate heat during operation due to the conversion of hydraulic pressure into mechanical force. The hydraulic fluid helps dissipate this heat by absorbing and carrying it away from the cylinder. This prevents overheating and helps maintain the optimal operating temperature of the cylinder.
4. Seal and Contamination Control: Hydraulic fluid also plays a crucial role in sealing the cylinder and preventing the ingress of contaminants. The fluid fills the cylinder’s pressure chamber and works in conjunction with seals, such as O-rings and rod seals, to create a barrier that prevents leakage and maintains the integrity of the hydraulic system. Additionally, the hydraulic fluid helps flush away contaminants, such as dirt and debris, that may enter the system, protecting the cylinder and other hydraulic components from damage.
5. Stability and Efficiency: The hydraulic fluid’s properties, such as viscosity and stability, are carefully selected to ensure efficient and reliable operation of the single-acting hydraulic cylinder. The fluid’s viscosity affects the speed and control of the cylinder’s movement, while its stability ensures consistent performance under varying operating conditions.
In summary, the primary function of hydraulic fluid in a single-acting hydraulic cylinder is to transmit and distribute force, provide lubrication, dissipate heat, seal the cylinder, control contamination, and contribute to the stability and efficiency of the hydraulic system. It serves as a crucial medium for converting hydraulic pressure into linear force and enabling the reliable operation of the cylinder.


editor by CX 2024-01-23