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

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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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single acting hydraulic cylinder

Can single-acting hydraulic cylinders be used in aerospace applications?

Yes, single-acting hydraulic cylinders can be used in aerospace applications. Here’s a detailed explanation:

Aerospace engineering involves designing and manufacturing aircraft and spacecraft, which require precise control and reliable actuation systems. Single-acting hydraulic cylinders are utilized in certain aerospace applications due to their ability to provide controlled linear motion and force.

Here are some examples of how single-acting hydraulic cylinders are used in aerospace:

1. Landing Gear Systems: Landing gear systems in aircraft play a crucial role in takeoff, landing, and taxiing. Single-acting hydraulic cylinders are commonly employed in these systems to extend and retract the landing gear. The cylinders provide the necessary force to support the aircraft’s weight and ensure smooth landing gear operation.

2. Cargo Doors and Access Panels: Aircraft cargo doors and access panels require controlled opening and closing mechanisms. Single-acting hydraulic cylinders are used to actuate these doors and panels, providing the force needed to move them and secure them in place during flight.

3. Flight Control Surfaces: Single-acting hydraulic cylinders are also applied in aircraft flight control systems. These systems control the movement of flight control surfaces such as ailerons, elevators, and rudders, which are essential for maneuvering the aircraft. Hydraulic cylinders provide the necessary force to actuate these surfaces, enabling precise control and maneuverability.

4. Thrust Reverser Systems: In some aircraft, thrust reverser systems are used to assist with deceleration during landing. Single-acting hydraulic cylinders are involved in these systems, helping to deploy and stow the thrust reverser mechanisms, which redirect engine thrust forward to assist in braking.

5. Spacecraft Applications: Single-acting hydraulic cylinders find applications in spacecraft systems as well. They can be used for functions such as deploying scientific instruments, extending solar panels, or controlling antenna movement. The cylinders provide reliable and controlled linear motion in the harsh conditions of space.

It is important to note that aerospace applications have stringent requirements for reliability, weight reduction, and safety. Single-acting hydraulic cylinders used in aerospace must meet rigorous standards and undergo extensive testing and certification processes to ensure their performance and reliability in extreme operating conditions.

In summary, single-acting hydraulic cylinders are employed in various aerospace applications, including landing gear systems, cargo doors and access panels, flight control surfaces, thrust reverser systems, and spacecraft applications. Their ability to provide controlled linear motion and force makes them valuable components in achieving precise actuation and control in aerospace engineering.

single acting hydraulic cylinder

Can single-acting hydraulic cylinders be integrated into manufacturing machinery?

Yes, single-acting hydraulic cylinders can be integrated into manufacturing machinery. Here’s a detailed explanation:

Manufacturing machinery often requires precise and controlled linear motion for various operations such as lifting, pressing, clamping, or material handling. Single-acting hydraulic cylinders offer an effective solution for these applications due to their ability to provide force in one direction. Here are some key points on how single-acting hydraulic cylinders can be integrated into manufacturing machinery:

1. Lifting and Lowering: Single-acting hydraulic cylinders are commonly used for lifting and lowering heavy loads in manufacturing machinery. They can be integrated into lifting mechanisms, such as scissor lifts or lift tables, to provide the necessary force for vertical movement. The cylinders can be actuated by hydraulic pumps to extend or retract, enabling controlled lifting and lowering operations.

2. Pressing and Forming: In manufacturing processes that involve pressing or forming operations, single-acting hydraulic cylinders can be employed. They can be integrated into presses, stamping machines, or forming dies to apply force and shape materials. The cylinders provide controlled and repeatable force application, ensuring accurate and consistent results.

3. Clamping and Holding: Single-acting hydraulic cylinders are suitable for clamping and holding applications in manufacturing machinery. They can be integrated into clamping devices or fixtures to secure workpieces during machining, welding, or assembly processes. The cylinders exert force to hold the workpiece firmly in place, providing stability and precision during manufacturing operations.

4. Material Handling: Single-acting hydraulic cylinders are utilized in material handling equipment within manufacturing machinery. They can be integrated into lifting arms, tilt mechanisms, or conveyor systems to manipulate and transport materials. The cylinders enable controlled movement and positioning of materials, enhancing efficiency and productivity in manufacturing processes.

5. Custom Integration: Single-acting hydraulic cylinders offer flexibility for custom integration into manufacturing machinery. They can be tailored to specific requirements by adjusting parameters such as bore size, stroke length, and mounting options. Manufacturers and machine builders can work together to design and incorporate hydraulic cylinders into machinery systems, ensuring optimal performance and compatibility.

It is important to consider the specific needs of the manufacturing machinery and select the appropriate single-acting hydraulic cylinders based on factors such as required force, stroke length, speed, and operating conditions.

In summary, single-acting hydraulic cylinders can be effectively integrated into manufacturing machinery for various applications including lifting, pressing, clamping, and material handling. Their ability to provide controlled linear force makes them valuable components in achieving precise and reliable movement in manufacturing processes.

single acting hydraulic cylinder

How does a single-acting hydraulic cylinder contribute to controlled and precise movement?

A single-acting hydraulic cylinder plays a significant role in providing controlled and precise movement in hydraulic systems. Here’s a detailed explanation:

1. Hydraulic Pressure Control: The movement of a single-acting hydraulic cylinder is controlled by regulating the hydraulic pressure supplied to the cylinder’s pressure chamber. By adjusting the pressure, the speed and force of the cylinder’s movement can be controlled. This enables precise control over the extension or retraction of the piston, allowing for controlled and precise movement of the load.

2. Flow Control Valve: Single-acting hydraulic cylinders are often equipped with flow control valves, which further enhance control over the cylinder’s movement. The flow control valve regulates the rate of fluid flow into and out of the cylinder, thereby controlling the speed of the piston’s movement. By adjusting the flow control valve, the movement can be fine-tuned to achieve the desired speed and ensure precise positioning of the load.

3. Cylinder Bore Size and Piston Area: The size of the cylinder bore and the piston area also contribute to controlled and precise movement. A larger cylinder bore and piston area provide a higher force output for a given hydraulic pressure. This allows for finer control over the movement, as smaller changes in pressure result in smaller changes in force. The larger piston area also reduces the effects of internal friction, enabling smoother and more precise movement.

4. Control Systems: Single-acting hydraulic cylinders can be integrated into control systems that provide advanced control and automation capabilities. These control systems can utilize sensors, feedback mechanisms, and programmable logic controllers (PLCs) to precisely control the movement of the cylinder. By incorporating closed-loop control and feedback, the system can continuously monitor and adjust the cylinder’s position, speed, and force, ensuring highly controlled and precise movement.

5. Position Feedback: To achieve precise movement, single-acting hydraulic cylinders can be equipped with position feedback mechanisms, such as linear position sensors or encoders. These sensors provide real-time feedback on the position of the piston, allowing for accurate control and positioning of the load. The position feedback information can be used to adjust the hydraulic pressure or flow rate, ensuring the desired position is achieved with high accuracy.

6. Damping and Cushioning: Single-acting hydraulic cylinders can incorporate damping and cushioning mechanisms to control the deceleration and impact forces at the end of the cylinder stroke. These mechanisms help prevent sudden stops or jerky movements, contributing to smoother and more controlled motion. Damping and cushioning improve the precision of the cylinder’s movement, particularly in applications that require delicate handling or where abrupt stops can cause damage.

7. System Calibration and Tuning: Achieving controlled and precise movement with a single-acting hydraulic cylinder often involves system calibration and tuning. This process involves adjusting the hydraulic parameters, such as pressure, flow rate, or valve settings, to optimize the system’s performance and achieve the desired movement characteristics. Calibration ensures that the hydraulic system operates within the desired range and delivers accurate and repeatable movement.

In summary, a single-acting hydraulic cylinder contributes to controlled and precise movement through hydraulic pressure control, flow control valves, cylinder bore size and piston area, control systems, position feedback, damping and cushioning mechanisms, and system calibration and tuning. These factors work together to provide accurate, smooth, and controlled motion in hydraulic systems, allowing for precise positioning and handling of loads.

China best WREN Hydraulic Cylinder Series CLL8006 Single-Acting Lock Nut Cylinder (800 ton)   vacuum pump connector	China best WREN Hydraulic Cylinder Series CLL8006 Single-Acting Lock Nut Cylinder (800 ton)   vacuum pump connector
editor by CX 2024-02-06