Product Description
Hydraulic cylinder(FE)
| Effective diameter | Number of stages | Stroke | Max working pressure |
| 110-214 mm | 3-6 | 3100-9530 mm | 150-250 Bar |
HangZhou Chengfeiyue hydraulic Machinery Co., LTD focuses on the production and development of hydraulic system. We mainly produce lift valves, limit valves, pneumatic control valve, gear pumps and A complete set of hydraulic system components. Our company is located in Industrial Park, HangZhou City, ZheJiang Province.
Production Process
Our company now has advanced excellent imported horizontal processing center and vertical processing center, also advanced cathodic electrophoretic coating production line and other precision manufacturing equipment have been introduced. We have cylindricity tester, hardness tester, thread tester, simulation vehicle hydraulic system test bench and other advanced laboratory, inspection equipment.
It has different processing workshops, including Rough machining,Finish machining,Pneumatic valve, limit valve processing zone,Centerless grinding machine,Cleaning machine ,Electrophoretic workshop,Assembly shop,Quality check,Testbed,etc.
Enterprise Certificate
Our company management team, research and development team and production team. Our team has rich experience in the development and manufacturing of complete hydraulic systems and strict quality management system (ISO9001:2015 and ISO/TS16949:2009 International Quality Management System Certification)
Our enterprise spirit is “work earnestly and be honest”. Take science and technology as the guide, take innovation as the soul, seek development by quality, and try our best to build famous brands in the world.
FAQ
How could I get a sample?
Before we received the first order, please afford the sample cost and express fee. We will return the sample cost back to you within your first order.
Sample time?
Existing items: Within 15 days.
Whether you could make our brand on your products?
Yes. We can print your Logo on both the products and the packages if you can meet our MOQ.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Certification: | GS, CE, ISO9001 |
|---|---|
| Pressure: | High Pressure |
| Work Temperature: | Normal Temperature |
| Acting Way: | Single Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Switching Type |
| Samples: |
US$ 500/Pieces
1 Pieces(Min.Order) | |
|---|
| Customization: |
Available
|
|
|---|

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.

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 safety considerations should be kept in mind when using single-acting hydraulic cylinders?
When using single-acting hydraulic cylinders, several important safety considerations should be kept in mind to ensure the well-being of personnel and the proper functioning of the equipment. Here’s a detailed explanation:
1. Pressure and Force Limitations: It is crucial to understand and adhere to the recommended pressure and force limitations specified by the manufacturer for the single-acting hydraulic cylinder. Exceeding these limits can lead to equipment failure, hydraulic fluid leaks, or other hazardous situations. Always operate the cylinder within its designed capacity to prevent accidents or damage.
2. Proper Installation: Ensure that the single-acting hydraulic cylinder is correctly installed according to the manufacturer’s instructions. This includes proper alignment, secure mounting, and appropriate connections. Improper installation can result in misaligned forces, leakage, or unexpected movements, posing safety risks.
3. Inspection and Maintenance: Regularly inspect the single-acting hydraulic cylinder for any signs of wear, damage, or leakage. Maintain a scheduled maintenance program to address any issues promptly. Neglecting maintenance can compromise the cylinder’s performance, leading to potential safety hazards or equipment failure.
4. Fluid Compatibility: Ensure that the hydraulic fluid used in the system is compatible with the single-acting hydraulic cylinder and other components. Using the wrong type of fluid can cause seal degradation, reduced performance, or system malfunctions. Consult the manufacturer’s recommendations and follow proper fluid selection and maintenance practices.
5. Leak Prevention: Monitor the hydraulic system for any signs of leaks, especially around the single-acting hydraulic cylinder. Leaking hydraulic fluid can create slippery surfaces and increase the risk of accidents. Address any leaks promptly by replacing damaged seals or components and ensure that proper containment measures are in place.
6. Overload Protection: Implement suitable overload protection mechanisms to prevent excessive forces or loads from damaging the single-acting hydraulic cylinder. This may include incorporating relief valves, pressure-limiting devices, or load-sensing controls. Overload protection helps prevent equipment failure, potential injuries, or structural damage.
7. Lockout/Tagout Procedures: When performing maintenance, repair, or any work involving the single-acting hydraulic cylinder, adhere to lockout/tagout procedures. Lockout/tagout ensures that the hydraulic system is safely de-energized and secured, preventing accidental activation or release of stored energy. This protects personnel from injury during maintenance activities.
8. Operator Training and Awareness: Ensure that operators receive proper training on the safe operation of single-acting hydraulic cylinders. They should be aware of the potential hazards, proper handling techniques, and emergency procedures. Promote a culture of safety and encourage operators to report any safety concerns or incidents promptly.
9. Personal Protective Equipment (PPE): Provide appropriate personal protective equipment, such as gloves, safety glasses, or protective clothing, to personnel working with or around the single-acting hydraulic cylinder. PPE helps protect against potential hazards, including hydraulic fluid contact, flying debris, or unexpected movements.
In summary, when using single-acting hydraulic cylinders, it is essential to consider pressure and force limitations, proper installation, inspection and maintenance, fluid compatibility, leak prevention, overload protection, lockout/tagout procedures, operator training and awareness, and the use of personal protective equipment. Adhering to these safety considerations promotes a safe working environment and ensures the reliable and secure operation of the hydraulic system.


editor by CX 2024-04-08