Product Description

Product Description

Quick details

Gland —-High grade ductile iron

Tube  —–Cold drawn honed tubling

Piston—–High grade ductile iron

Piston rod—-Chromed C45

Piston seal—-Urethane seal

End cap—-Casting seel

Mounting style—-Pins and clips included

Gland seals—-Polyurethane U-cup

Rod wiper—-Urethane snap in

Paint color—-Semi-gloss black, grey, red

1.Light-weight,high strength

   Base on the nature of construction work,the hydraulic cylinders need to suit for high strength,high

   using frequency,high fatigability.to promise the sability and reliablity of application.

2.the seal system

   select the excellent seal kits from japan and germany.adopt the advanced physical design,make

   sure the hydraulic cylinder get the best piston rod oil film

3.cylinder body

   adopt the good-quality alloy honed tube,though cold-drawing and rolling,to reach an excellent

   toughness and surface hardness.improve the wear-resistance.

4.piston rod

   middle frequency induction hardening and tempering,chrome plated on rod surface to improve the

   anti-rust ,wear-resistance and anti-scratch property.

5.safety/cushioning fuction

   The inside of cylinder set up an cushioning device in the end of stroke,it can absorb the juge inpact.

Technical Specification size.
 

cylinder diameter (mm)

piston rod diameter (mm)

max stroke (mm)

40

20

22

25

500

50

25

28

32

600

63

32

35

45

800

80

40

45

55

2000

90

45

50

63

2000

100

50

55

70

4000

110

55

63

80

4000

125

63

70

90

4000

140

70

80

100

4000

150

75

85

105

4000

160

80

90

110

4000

180

90

100

125

4000

200

100

110

140

4000

220

110

125

160

4000

250

125

140

180

4000

 Cylinder tube machining

  
  
  Piston 
  

Application boom cylider, stick cylinder, Dozer cylinder.
 

Excavator Type Name Stroke  (mm) Installation Diameter(mm) Cylinder Diameter(mm) Rod Diameter(mm)
5.5T Boom Cylinder 710 1120 115 65
Stick Cylinder 815 1210 90 55
Bucket Cylinder 605 945 85 55
Dozer Cylinder 150 500 110 60
6.5T Boom Cylinder 885 1311 110 65
Stick Cylinder 900 1300 90 60
Bucket Cylinder 730 1120 80 50
Dozer Cylinder 145 565 130 70
11.5T Left Boom Cylinder 980 1480 100 70
Right Boom Cylinder 980 1480 100 70
Stick Cylinder 1571 1530 115 80
Bucket Cylinder 885 1375 95 65
18.5T Left Boom Cylinder 1195 1790 120 85
Right Boom Cylinder 1195 1790 120 85
Stick Cylinder 1405 2000 130 95
Bucket Cylinder 1110 1630 110 80
20T Boom Cylinder 1285 1870 120 85
Stick Cylinder 1490 2075 135 95
Bucket Cylinder 1120 1680 115 80
23T Boom Cylinder Assembly 1295 1870 130 90
Stick Cylinder Assembly 1675 2225 140 100
Bucket Cylinder Assembly 1156 1744 130 90
26T Boom Cylinder Assembly 1420 1980 139 100
Stick Cylinder Assembly 1748 2348 149 110
Bucket Cylinder Assembly 1130 1753 134 100
40T Boom Cylinder Assembly 1495 2135 160 110
Stick Cylinder Assembly 1790 2480 170 110
Bucket Cylinder Assembly 1285 1990 160 110

Q: Are you trading company or manufacturer ?

A: We are factory.

Q: How long is your delivery time?

A: Generally it is 5-10 days if the goods are in stock. or it is 15-20 days if the goods are not in stock, it is according to quantity.

Q: Do you provide samples ? is it free or extra ?

A: Yes, we could offer the sample for free charge but do not pay the cost of freight.

Q: What is your terms of payment ?

A: Payment 30%TT in advance. 70% T/T before shippment

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Certification: GS, RoHS, CE, ISO9001
Pressure: High Pressure
Work Temperature: Normal Temperature
Acting Way: Single Acting
Working Method: Straight Trip
Adjusted Form: Switching Type
Samples:
US$ 120/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

single acting hydraulic cylinder

In what types of machinery can single-acting hydraulic cylinders be applied?

Single-acting hydraulic cylinders find applications in various types of machinery. Here’s a detailed explanation:

1. Construction Equipment: Single-acting hydraulic cylinders are commonly used in construction machinery. They are employed in equipment such as excavators, loaders, bulldozers, backhoes, and cranes. These cylinders facilitate lifting, pushing, digging, and other tasks involved in construction and earthmoving operations.

2. Material Handling Machinery: Single-acting hydraulic cylinders are widely utilized in material handling equipment, including forklifts, pallet jacks, scissor lifts, and conveyor systems. These cylinders provide the necessary force for lifting, lowering, tilting, and positioning loads in warehouses, manufacturing facilities, distribution centers, and other material handling applications.

3. Agricultural Machinery: In the agricultural sector, single-acting hydraulic cylinders are employed in various machinery. They can be found in agricultural equipment such as tractors, loaders, harvesters, sprayers, and hay balers. These cylinders assist in tasks such as lifting and lowering implements, operating hydraulic attachments, and controlling the movement of agricultural machinery.

4. Automotive Equipment: Single-acting hydraulic cylinders are utilized in automotive equipment for a range of applications. They are used in car lifts, vehicle ramps, and automobile jacks for lifting vehicles during maintenance, repairs, and inspections. These cylinders provide the necessary force to raise and support the weight of automobiles.

5. Industrial Machinery: Single-acting hydraulic cylinders are employed in various industrial machinery and equipment. They can be found in hydraulic presses, stamping machines, compactors, packaging equipment, and machine tools. These cylinders assist in applying force, controlling motion, and performing precise positioning in industrial manufacturing processes.

6. Aerospace and Defense: Single-acting hydraulic cylinders are utilized in aerospace and defense applications. They can be found in aircraft, helicopters, missiles, and other aerospace systems. These cylinders contribute to functions such as landing gear actuation, flight control surfaces, cargo handling, and weapon systems.

7. Marine and Offshore Equipment: Single-acting hydraulic cylinders are employed in marine and offshore equipment. They can be found in ship machinery, cranes, winches, hydraulic lifts, and deck machinery. These cylinders assist in various marine operations, including cargo handling, anchor handling, steering mechanisms, and positioning systems.

8. Environmental and Waste Management Equipment: Single-acting hydraulic cylinders are utilized in environmental and waste management machinery. They can be found in garbage compactors, waste balers, recycling equipment, and waste handling systems. These cylinders contribute to tasks such as compressing waste materials, operating sorting mechanisms, and facilitating efficient waste management processes.

9. Specialized Applications: Single-acting hydraulic cylinders are also applied in specialized machinery and equipment for specific industries or tasks. Examples include hydraulic presses for forming and molding operations, hydraulic cylinders in dam gates and water control systems, hydraulic actuators in robotic systems, and hydraulic mechanisms in amusement park rides.

In summary, single-acting hydraulic cylinders find applications in a wide range of machinery across various industries. They are utilized in construction equipment, material handling machinery, agricultural machinery, automotive equipment, industrial machinery, aerospace and defense systems, marine and offshore equipment, environmental and waste management machinery, as well as specialized applications in different sectors.

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 differ from a double-acting one?

A single-acting hydraulic cylinder and a double-acting hydraulic cylinder differ in their operational characteristics and capabilities. Here’s a detailed explanation:

1. Direction of Force: The main difference between the two types of cylinders lies in the direction of force they can generate. A single-acting hydraulic cylinder operates in one direction only, exerting force in the extending stroke. In contrast, a double-acting hydraulic cylinder can generate force in both the extending and retracting strokes.

2. Hydraulic Ports: Single-acting hydraulic cylinders have a single hydraulic port, typically located at the base of the cylinder. This port is used to supply hydraulic fluid to the pressure chamber, creating the force for the extending stroke. Double-acting hydraulic cylinders, on the other hand, have two hydraulic ports—one for supplying fluid to the extending side of the cylinder and the other for supplying fluid to the retracting side.

3. Return Stroke: In a single-acting hydraulic cylinder, the return stroke is accomplished by external forces or mechanisms. Once the hydraulic pressure is released or redirected, the piston is pushed back to its original position by factors such as gravity or springs. In contrast, double-acting cylinders can generate force in the retracting stroke by supplying hydraulic fluid to the appropriate side of the cylinder, allowing for bidirectional force generation.

4. Versatility: Double-acting hydraulic cylinders offer greater versatility compared to single-acting cylinders. With the ability to generate force in both directions, double-acting cylinders can perform a wider range of tasks and accommodate varying operational requirements. They provide more flexibility in applications where bidirectional force, precise control over extending and retracting movements, or the ability to hold a load in place is necessary.

5. Complexity and Cost: Single-acting hydraulic cylinders have a simpler design and require fewer hydraulic components compared to double-acting cylinders. This generally makes them more cost-effective and easier to maintain. Double-acting cylinders, with their additional hydraulic ports and capabilities, tend to be more complex and may involve higher costs in terms of construction, installation, and maintenance.

6. Common Applications: Single-acting hydraulic cylinders are commonly used in applications where force is only required in one direction, such as lifting equipment, dump trucks, and hydraulic jacks. Double-acting cylinders find widespread use in various industries and applications, including manufacturing, construction, and automation, where bidirectional force, precise control, and holding capabilities are essential.

In summary, the main differences between single-acting and double-acting hydraulic cylinders lie in their force generation capabilities, hydraulic ports, return stroke mechanisms, versatility, complexity, and cost. Understanding these differences is crucial for selecting the appropriate type of hydraulic cylinder for specific application requirements.

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editor by Dream 2024-04-29