Product Description

Hollow plunger hydraulic ram

Hollow plunger hydraulic cylinder
Hollow plunger design allows for both push and pull forces
Single acting, spring return
Baked enamel finish for increased corrosion resistance

Collar threads enables easy fixture
1. Rated output from 20 metric tons to 100 metric tons
2. Closed height from 162mm to 254mm

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Model   Tonnage Stroke   Centre bore Matching
pump
  Closed height   Weight   Volume
  (T)   (mm)   (mm)   (mm)   (kg)   (mm)
  HHYG-2050K   20   50   27   HHB-700   162   7.7   180*120*200
  HHYG-25710K   20   100   27   HHB-700   212   9.5   150*110*220
  HHYG-3050K   30   50   32   HHB-700   178   10.3   165*120*195
  HHYG-35710K   30   100   32   HHB-700   228   13   170*120*245
  HHYG-6050K   60   50   53   HHB-700   247   28.1   250*250*280
  HHYG-65710K   60   100   53   HHB-700A   297   38   250*250*330
  HHYG-10075K   100   75   80   HHB-700A   254   54.5   310*310*280

Type: Hydraulic Jack
Structure: Hydraulic Jack
Capacity (Load): 20~ 100ton
Power Source: Hydraulic
Max Height: 301-350mm
Certification: CE, ISO 9001:2000, ISO 9001:2008
Customization:
Available

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hydraulic cylinder

What advantages do hydraulic rams offer in terms of force multiplication?

Hydraulic rams offer several advantages when it comes to force multiplication. Here's a detailed explanation:

1. High Force Output: Hydraulic rams are capable of generating a high amount of force. This force is produced by applying hydraulic pressure to a piston, which then transmits the force to the load. The hydraulic system allows for the efficient transfer of force, resulting in significant force multiplication compared to other mechanical systems.

2. Adjustable Force: The force output of hydraulic rams can be easily adjusted by controlling the hydraulic pressure. By regulating the pressure within the hydraulic system, the force applied by the ram can be increased or decreased as needed. This adjustability makes hydraulic rams versatile and suitable for a wide range of applications with varying force requirements.

3. Mechanical Advantage: Hydraulic rams can leverage mechanical advantage to further multiply the force. By incorporating mechanical systems such as levers, linkages, or gears in conjunction with hydraulic rams, the force applied to the ram can be amplified. This mechanical advantage allows hydraulic rams to handle even higher force requirements than what the hydraulic pressure alone would be able to achieve.

4. Smooth and Controlled Operation: Hydraulic rams offer smooth and controlled operation, allowing for precise force application. The hydraulic fluid acts as a medium, transmitting force evenly and smoothly, resulting in a consistent and controlled movement of the ram. This smooth operation is particularly beneficial in applications that require precise positioning or gradual force application.

5. Compact Design: Hydraulic rams have a compact design, which makes them suitable for applications where space is limited. The compact size allows hydraulic rams to be installed in tight spaces without compromising their force multiplication capabilities. This advantage is particularly valuable in industries such as construction, automotive, or aerospace, where equipment needs to be compact and efficient.

6. Safety Features: Hydraulic rams often incorporate safety features to prevent overloading or excessive force application. These features may include pressure relief valves or limit switches, which protect the ram and surrounding components from damage due to excessive force. The inclusion of safety features ensures safe and reliable operation while maximizing the force multiplication capabilities of hydraulic rams.

Overall, hydraulic rams provide significant advantages in terms of force multiplication. Their high force output, adjustability, mechanical advantage, smooth operation, compact design, and incorporation of safety features make them a preferred choice in various industries where substantial force is required.

hydraulic cylinder

How does a hydraulic ram handle variations in hydraulic hose technology?

A hydraulic ram is designed to handle variations in hydraulic hose technology. Here's a detailed explanation:

1. Compatibility: Hydraulic rams are designed to be compatible with various types of hydraulic hoses available in the market. Hydraulic hoses come in different sizes, materials, and specifications, and hydraulic ram manufacturers ensure that their products can accommodate these variations. The hydraulic ram's connectors, fittings, and seals are designed to match standard hydraulic hose sizes and connections, allowing for easy integration and compatibility.

2. Pressure Ratings: Hydraulic hoses have specific pressure ratings that indicate the maximum pressure they can withstand. Hydraulic rams are engineered to operate within the pressure limits specified by the hydraulic hoses. The hydraulic ram's components, such as seals and cylinders, are designed and selected to handle the maximum pressure rating of the hydraulic hose to ensure safe and reliable operation. This consideration allows hydraulic rams to effectively handle variations in hydraulic hose technology.

3. Flexibility and Bend Radius: Hydraulic hoses can have different levels of flexibility and bend radius based on their construction and materials. Hydraulic rams are designed to accommodate the flexibility and bend radius requirements of the hydraulic hoses they are used with. The hydraulic ram's design includes provisions for hose routing, allowing for proper hose installation without excessive bending or strain. By considering the flexibility and bend radius of hydraulic hoses, hydraulic rams ensure optimal performance and longevity of the hose assemblies.

4. Fluid Compatibility: Hydraulic hoses are designed to handle specific types of hydraulic fluids, such as mineral oil-based fluids or synthetic fluids. Hydraulic rams are constructed using materials compatible with a wide range of hydraulic fluids. The seals and other components in the hydraulic ram are selected to withstand the chemical properties of the hydraulic fluid used. This compatibility ensures that the hydraulic ram can handle variations in hydraulic hose technology without compromising performance or causing fluid leaks.

5. Industry Standards: Hydraulic hose technology is governed by industry standards and specifications. Hydraulic ram manufacturers adhere to these standards to ensure compatibility and safety. Common standards, such as SAE (Society of Automotive Engineers) or ISO (International Organization for Standardization), provide guidelines for hydraulic hose dimensions, pressure ratings, and performance requirements. Hydraulic rams are designed and manufactured in accordance with these standards to ensure reliable and consistent performance across different hydraulic hose technologies.

In summary, hydraulic rams are designed to handle variations in hydraulic hose technology through compatibility with different hose sizes and connections, consideration of pressure ratings, flexibility and bend radius requirements, fluid compatibility, and adherence to industry standards. These design considerations ensure that hydraulic rams can effectively and safely operate with various hydraulic hose technologies in different applications.

hydraulic cylinder

What are the components and parts of a hydraulic ram?

A hydraulic ram consists of several key components and parts. Here's a detailed explanation:

1. Drive Pipe: The drive pipe is the inlet pipe through which the flowing water enters the hydraulic ram. It is connected to a water source, such as a stream or a river, and carries the water that provides the energy for the hydraulic ram.

2. Delivery Pipe: The delivery pipe is the outlet pipe through which the water is pumped to the desired destination at a higher elevation. It carries the lifted water away from the hydraulic ram.

3. Valve: The valve controls the flow of water within the hydraulic ram. It is responsible for allowing the water to enter the ram during the drive phase and closing to create the water hammer effect during the delivery phase. The valve's opening and closing are crucial for the hydraulic ram's operation.

4. Air Vessel: The air vessel, also known as the air chamber or air dome, is a chamber that contains compressed air. It acts as an accumulator and helps maintain a constant flow of water by absorbing pressure fluctuations during the operation of the hydraulic ram. The compressed air in the air vessel provides a cushioning effect and contributes to the overall efficiency of the ram.

5. Waste Valve: Some hydraulic ram designs include a waste valve. The waste valve is an optional component that allows excess water or air to escape from the hydraulic ram if the pressure becomes too high. It helps protect the ram from damage caused by excessive pressure build-up.

6. Seals and Gaskets: Seals and gaskets are essential components that prevent leakage of water or air from the hydraulic ram. They ensure the proper functioning and efficiency of the ram by maintaining the necessary pressure differentials and preventing loss of energy.

7. Frame and Mounting: The hydraulic ram is typically housed within a sturdy frame or housing that provides support and protection for the components. The frame also serves as a mounting point for installation, securing the ram in the desired location.

8. Control Mechanism (Optional): Some hydraulic ram systems may incorporate a control mechanism, such as a lever or float, to regulate the operation of the ram. This mechanism allows manual or automatic control over the valve opening and closing, providing additional flexibility and adjustability.

These components work together to enable the hydraulic ram to harness the energy of flowing water and pump a portion of that water to a higher elevation without the need for external power sources.

China OEM Hollow Plunger Hydraulic RAM (HHYG-K)   supplier China OEM Hollow Plunger Hydraulic RAM (HHYG-K)   supplier
editor by CX 2024-01-15