Product Description

Hydraulic Cylinders 10-200T Capacity Piston Cylinder

Product Description

Hydraulic Cylinder is widely used in electric power, chemical industry, steel, bridge, machinery and other enterprises.
 

  1. Light and compact, easy to use and carry
  2. Baked enamel finish for increased corrosion resistance
  3. Imported seals allows the oil cylinder work continuously without abrasion
  4. All raw materials are processed at the top level
  5. Produced by CNC lathe and grinding machine using High-strength alloy steel, process through high level heat treatment

Other Types of Hydraulic Cylinders for Option:

QUALITY CONTROL PROCESS

FAQ

Q1: Are you a factory or a trading company?

A1:We are a combination of both, we focused on manufacturing material handling product such as lift tables, manual & electric pallet trucks and lifting platforms over 35 years, we also exporting manual & electric chain hoist, lever hoisting, lifting clamp and steel jack. We are your ideal choice for 1 stop purchase with our compete line of industrial lifting/moving equipment
Q2: Can Giant lift provide customized products? OEM products or ODM products?
A2: Yes, Giant lift can provide customized products according to your requirement. Both OEM and ODM are acceptable.

Q3: Can we print the LOGO on products?
A3: Yes, the OEM is available with the permission of our customers.

Q4: How do you control your quality?
A4: 1. We only select high-quality steel material from famous steel group
2. Standardized production process with traceable ID Card, every part can be tracked to the original records.
3. 100% finished product testing before shipping.
4. We accept third party product inspections.
5. ISO9001 Quality management system certificated factory
6. Supervised container loading process, ensures the last step security

Q5: How long is the warranty on your products?
A5: We provide 12 months warranty for all of our product, excluding wear parts such as wheels, tire or hydraulic oil
Q6: What’s the lead time for production?
A6: Usually around 10-15 days after payment received, around 30 days during new year’s or national holidays.

Q7: What Payment terms do you accept?
A7: T/T or L/C, if you want any other method please contact sales

Q8: What are your advantages compared to the others?
A8:

  1. Unique products, with customized service.
  2. Timely production and delivery, time is money.
  3. Market protection service, long term business strategy.

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After-sales Service: Technical Support and Spare Parts Supply
Warranty: One Year
Type: Hydraulic Jack
Structure: Hydraulic Jack
Capacity (Load): 20t-400t
Power Source: Hydraulic
Samples:
US$ 80/Piece
1 Piece(Min.Order)

|

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

How does a single-acting hydraulic cylinder handle variations in hydraulic fluid flow rate?

A single-acting hydraulic cylinder is designed to handle variations in hydraulic fluid flow rate effectively. Here’s a detailed explanation:

Hydraulic fluid flow rate plays a crucial role in the operation of hydraulic systems, including single-acting hydraulic cylinders. These cylinders rely on hydraulic fluid flow to extend or retract the piston and generate force. Here are some key points on how a single-acting hydraulic cylinder handles variations in hydraulic fluid flow rate:

1. Flow Control Valves: Single-acting hydraulic cylinders can incorporate flow control valves to regulate the hydraulic fluid flow rate. Flow control valves, such as flow restrictors or flow control orifices, are installed in the hydraulic circuit to control the amount of fluid flowing into or out of the cylinder. These valves can be adjusted to restrict or increase the flow rate, allowing for precise control over the cylinder’s speed and force generation. By adjusting the flow control valve, variations in the hydraulic fluid flow rate can be managed, ensuring consistent performance of the cylinder.

2. Pressure Compensation: Single-acting hydraulic cylinders are typically connected to a hydraulic power unit that maintains a certain level of hydraulic pressure. When variations in hydraulic fluid flow rate occur, the pressure compensation mechanism of the hydraulic power unit helps maintain a consistent pressure within the system. This compensation ensures that the cylinder receives an adequate supply of hydraulic fluid, regardless of the flow rate variations, allowing it to operate smoothly and generate the desired force.

3. Accumulators: In some cases, single-acting hydraulic cylinders can be equipped with accumulators to handle variations in hydraulic fluid flow rate. An accumulator is a device that stores hydraulic fluid under pressure. During periods of high flow rate, the accumulator stores excess fluid. When the flow rate decreases, the accumulator releases the stored fluid to compensate for the reduced flow. This helps maintain a consistent flow rate to the cylinder, ensuring its proper operation even during fluctuations in the hydraulic fluid flow rate.

4. System Design: The overall design of the hydraulic system that includes the single-acting hydraulic cylinder can also contribute to handling variations in hydraulic fluid flow rate. Proper sizing and selection of components, such as pumps, hoses, and valves, are important considerations. The system should be designed to accommodate the expected flow rate variations while maintaining adequate fluid supply to the cylinder. By ensuring an appropriately designed hydraulic system, the single-acting hydraulic cylinder can handle variations in flow rate effectively.

It is essential to consider factors such as load requirements, operating conditions, and safety considerations when selecting and configuring the hydraulic system and components to ensure optimal performance of the single-acting hydraulic cylinder.

In summary, a single-acting hydraulic cylinder handles variations in hydraulic fluid flow rate through the use of flow control valves, pressure compensation mechanisms, accumulators, and proper system design. These features enable the cylinder to maintain consistent performance and generate the desired force, regardless of fluctuations in the hydraulic fluid flow rate.

single acting hydraulic cylinder

How does a single-acting hydraulic cylinder handle variations in hydraulic pressure?

A single-acting hydraulic cylinder is designed to handle variations in hydraulic pressure in a specific manner. Here’s a detailed explanation:

1. Extending Stroke: During the extending stroke of a single-acting hydraulic cylinder, hydraulic pressure is applied to the pressure chamber through the hydraulic port. The pressure acts on the piston, causing it to move in the outward direction, extending the piston rod. The force generated by the hydraulic pressure is directly proportional to the pressure and the effective area of the piston.

2. Return Stroke: Unlike double-acting hydraulic cylinders that can generate force in both directions, single-acting cylinders rely on external forces or mechanisms for the return stroke. Once the hydraulic pressure is released or redirected, external forces such as gravity, springs, or other mechanical means push the piston back to its original position.

3. Handling Pressure Variations: Single-acting hydraulic cylinders are designed to accommodate variations in hydraulic pressure in the following ways:

  • Pressure Limitations: Single-acting cylinders have pressure limitations specified by their design and construction. These limitations ensure that the cylinder can safely handle the maximum hydraulic pressure it is rated for without experiencing structural failure or damage.
  • Pressure Relief Valve: In some applications, a pressure relief valve may be installed in the hydraulic circuit to protect the hydraulic cylinder from excessive pressure. The relief valve opens when the pressure exceeds a predetermined limit, allowing the excess fluid to bypass the cylinder and maintain a safe operating pressure.
  • Sealing System: Single-acting cylinders have sealing systems that help contain the hydraulic pressure within the pressure chamber and prevent leakage. The seals, such as O-rings, rod seals, and wiper seals, are designed to withstand the pressure and provide an effective barrier between the pressure chamber and the return chamber.
  • Controlled Fluid Flow: The hydraulic system controlling the single-acting cylinder may incorporate flow control valves or regulators to regulate the rate of fluid flow. These components can help manage pressure variations by controlling the flow of hydraulic fluid into the pressure chamber during the extending stroke.

By considering pressure limitations, incorporating pressure relief valves, utilizing effective sealing systems, and implementing controlled fluid flow, single-acting hydraulic cylinders can handle variations in hydraulic pressure and maintain safe and reliable operation.

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editor by CX 2024-01-01