Product Description
Single Acting Low Height Flat Multistage Hydraulic Jack Cylinder
Product Description
Features:
Max working pressure 700 bar.
Single acting cylinders with heavy duty return springs and are designed to be used in all orientations.
These flat cylinders will fit where other cylinders collapsed height will not enable placement.
Coated with corrosive resistant baked enamel.
Steel cylinder piston rods are hard chrome plated.
Saddles are not required due to grooved cylinder piston rod ends.
The stop ring avoids the piston rod over-reaching and enables maximum cylinder extension.
Product Show
Product Parameters
Model | Capacity (T) |
Stroke (mm) |
Closed Height (mm) |
Oil Capacity (ml) |
Extended Height (mm) |
Outside Diameter (mm) |
Weight (kg) |
KSRSMB-100 | 10 | 25 | 42 | 22 | 67 | 82*55 | 1.5 |
KSRSMB-200 | 20 | 26 | 51 | 41 | 77 | 101*76 | 2.4 |
KSRSMB-300 | 30 | 53 | 58 | 58 | 111 | 117*95 | 4.5 |
KSRSMB-500 | 50 | 64 | 66 | 113 | 130 | 140*114 | 7.0 |
Related Products
HYDRAULIC HAND PUMP | |
Model | KSP-392 or KSP-80 |
Pump Type | Single acting and 2 speed |
Oil Capacity | 901ml or 2200ml |
Max. Working Pressure | 700bar |
Weight | 4KGS or 10.9KGS |
AIR HYDRAULIC PUMP | |
Model | KSP-160 |
Pump Type | Single acting and 2 speed |
Oil Capacity | 1600ml |
Max. Working Pressure | 700bar |
Weight | 9KGS |
Electric Hydraulic Pump | |
Model | KHE-3SM |
Power Supply | 220V, 50/60Hz, 1PH |
Motor Power | 0.55kw |
Oil Capacity | 5L |
Flow | 4.5L/min(1st stage), 0.35L/min(2nd stage) |
Company Profile
FAQ
Q1: What’s the MOQ?
A1: MOQ is 1 piece.
Q2: How to make payment?
A2: Paypal, Western Union, Moneygram or T/T transfer.
Q3: How long does it take to process orders?
A3: It usually takes 10-14 business days to process most orders for no stock. If stock available, it will only take 2-3 business days.
Q4: What is the packing method?
A4: For small piece, we use carton box; for big piece, we use exporting grade plywood case.
Q5: How to ship?
A5: Sea freight, Air freight or International express (DHL, FEDEX, UPS…) all are available.
Q6: What is the warranty?
A6: 12 months against B/L date.
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Certification: | CE, ISO9001 |
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Pressure: | High Pressure |
Work Temperature: | Normal Temperature |
Acting Way: | Single Acting |
Working Method: | Straight Trip |
Adjusted Form: | Regulated Type |
Samples: |
US$ 145/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
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How does a single-acting hydraulic cylinder contribute to energy-efficient force generation?
A single-acting hydraulic cylinder contributes to energy-efficient force generation through its design and operating principles. Here’s a detailed explanation:
1. Unidirectional Force: Single-acting hydraulic cylinders generate force in one direction, typically in the extension stroke. This unidirectional force generation eliminates the need for hydraulic fluid to exert force in the opposite direction, resulting in energy savings. The hydraulic system only needs to supply fluid to extend the cylinder, while the retraction of the piston is achieved through the force of gravity or other external means, reducing the overall energy consumption.
2. Reduced Fluid Volume: Single-acting hydraulic cylinders require a smaller volume of hydraulic fluid compared to double-acting cylinders. Since these cylinders operate primarily in one direction, the fluid volume needed for extension strokes is lower. This reduction in fluid volume leads to energy savings in terms of pumping and circulating the hydraulic fluid.
3. Lower Pumping Requirements: The unidirectional force generation of single-acting hydraulic cylinders reduces the workload on the hydraulic pump. As the pump only needs to supply fluid for extension strokes, the pump size and power requirements can be optimized, leading to energy efficiency. This is particularly beneficial in applications where the hydraulic system is powered by electric motors or other energy sources.
4. Gravity-Assisted Retraction: Single-acting hydraulic cylinders often utilize the force of gravity or external forces to retract the piston during the return stroke. By leveraging these external forces, the hydraulic system can minimize the energy required for retraction. This is particularly advantageous in applications where the weight of the load or other external factors can assist in the retraction process.
5. System Optimization: Single-acting hydraulic cylinders allow for system optimization to maximize energy efficiency. By carefully selecting cylinder sizes, operating pressures, and flow rates, the hydraulic system can be designed to match the specific force requirements of the application. This optimization ensures that the system operates at its most energy-efficient operating point, minimizing energy waste and maximizing overall system performance.
6. Regenerative Systems: In certain applications, single-acting hydraulic cylinders can be integrated into regenerative hydraulic systems. These systems capture and reuse the energy generated during the retraction stroke, effectively recycling the energy that would otherwise be dissipated. By harnessing this regenerative energy, the overall energy efficiency of the system is significantly improved.
By employing these energy-efficient design and operating principles, single-acting hydraulic cylinders contribute to reduced energy consumption and improved overall system efficiency.
How does a single-acting hydraulic cylinder contribute to precise force application in industrial settings?
A single-acting hydraulic cylinder plays a significant role in enabling precise force application in industrial settings. Here’s a detailed explanation:
In many industrial applications, the ability to apply precise and controlled forces is crucial for achieving desired outcomes. A single-acting hydraulic cylinder offers several features that contribute to precise force application. Here are the key factors:
1. Hydraulic Systems: Single-acting hydraulic cylinders are typically part of a hydraulic system that includes a pump, valves, and control mechanisms. The hydraulic system allows for precise control over the force applied by the cylinder. By regulating the hydraulic pressure supplied to the cylinder, the force generated can be accurately adjusted to match the specific requirements of the application. This precise control enables operators to apply forces with a high degree of accuracy.
2. Force Generation: Single-acting hydraulic cylinders are designed to generate force in a single direction, either during extension or retraction of the piston. The force generated is directly proportional to the hydraulic pressure applied to the cylinder. By precisely controlling the hydraulic pressure, the force applied by the cylinder can be finely adjusted to meet the desired level of precision. This is particularly beneficial in industrial settings where precise force application is necessary for tasks such as assembly, pressing, clamping, or material deformation.
3. Load Sensing and Feedback: Some advanced hydraulic systems incorporate load sensing mechanisms and feedback devices. Load sensing allows the hydraulic system to monitor the force being exerted by the cylinder in real-time. This feedback information can be used to adjust the hydraulic pressure and ensure that the desired force is maintained accurately. Load sensing and feedback systems enhance the precision of force application by continuously monitoring and adjusting the hydraulic parameters to match the requirements of the industrial process.
4. Control Valves: Single-acting hydraulic cylinders can be equipped with control valves that provide further control over the force application. Control valves, such as pressure relief valves or flow control valves, regulate the flow of hydraulic fluid to the cylinder and control the rate at which the force is applied. These valves can be adjusted to fine-tune the force application, allowing for precise and gradual force buildup or release. By manipulating the control valves, operators can achieve the desired level of precision in force application for industrial processes.
5. Application-Specific Customization: Single-acting hydraulic cylinders can be customized to meet specific industrial requirements. The cylinder’s design, size, and materials can be tailored to suit the application, ensuring optimal force application and precision. Customization options include the selection of appropriate seals, coatings, or accessories to enhance the cylinder’s performance and accuracy in specific industrial settings.
6. Safety Considerations: Precise force application in industrial settings often involves safety considerations. Single-acting hydraulic cylinders can incorporate safety features such as pressure relief valves, emergency stop mechanisms, or overload protection systems. These safety measures help prevent excessive force application, equipment damage, or system failures, ensuring the safety of personnel and the integrity of the industrial processes.
By leveraging the features of single-acting hydraulic cylinders, industrial settings can achieve precise force application, which is essential for tasks that require accuracy, consistency, and repeatability. Whether it’s in manufacturing, assembly, material processing, or other industrial applications, the precise force application facilitated by single-acting hydraulic cylinders contributes to improved product quality, operational efficiency, and overall productivity.
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.
editor by CX 2024-02-04