JHP2 High Pressure Gear Pump For Loader and Roller
JHP high-pressure gear pump is a new type of high-pressure gear pump developed by our company. Its maximum working pressure reaches 31.5MPa. It is characterized by high efficiency, good impact resistance, low noise, strong anti-pollution ability, small size, lightweight, and long service life. It is applicable to all kinds of hydraulic engineering machinery, especially the working conditions of loaders, rollers, cranes, etc. that require pressure oil sources
JHP high-pressure gear pump is a new type of high-pressure gear pump developed by our company. Its maximum working pressure reaches 31.5MPa. It is characterized by high efficiency, good impact resistance, low noise, strong anti-pollution ability, small size, lightweight, and long service life. It is applicable to all kinds of hydraulic engineering machinery, especially the working conditions of loaders, rollers, cranes, etc. that require pressure oil sources
Specification of Gear Pump
Series | Model | Theoretical displacement (mL/R) |
Pressure (MPa) |
Speed (r/min) |
Drive power | Volume Efficiency | Total Efficiency | weight(kg) | ||
rated | max | rated | max | Kw | ||||||
2 | JHP2020 | 20.9 | 25 | 31.5 | 2200 | 2500 | 21.29 | 92 | 83 | 18.5 |
JHP2032 | 31.3 | 31.88 | 19.1 | |||||||
JHP2040 | 41.8 | 42.57 | 19.7 | |||||||
JHP2050 | 52.2 | 53.17 | 20.4 | |||||||
JHP2063 | 62.7 | 23 | 28 | 58.75 | 21 | |||||
JHP2070 | 73.1 | 68.5 | 21.6 | |||||||
JHP2080 | 83.6 | 78.34 | 22.3 | |||||||
JHP2090 | 90 | 17.5 | 22 | 64.17 | 22.7 | |||||
JHP2100 | 104.5 | 74.5 | 23.5 | |||||||
3 | JHP3053 | 67.2 | 25 | 31.5 | 2200 | 2500 | 68.4 | 92 | 83 | 27.6 |
JHP3080 | 83.9 | 85.45 | 28.5 | |||||||
JHP3100 | 100.8 | 102.67 | 29.5 | |||||||
JHP3112 | 117.5 | 119.68 | 30.4 | |||||||
JHP3125 | 134.4 | 136.89 | 31.4 | |||||||
JHP3140 | 142.8 | 21 | 25 | 122.17 | 31.9 | |||||
JHP3150 | 151.1 | 129.27 | 32.3 | |||||||
JHP3160 | 167.9 | 143.65 | 33.3 | |||||||
JHP3180 | 184.7 | 17.5 | 22.5 | 131.68 | 34.3 | |||||
JHP3200 | 201.5 | 14 | 17.5 | 114.16 | 35.2 |
Application of Gear Pump
Gear pumps are usually used to pump high-viscosity fluids, such as oil, paint, resin, or food. They are preferred in any application that requires accurate metering or high voltage output. The output of the gear pump is not greatly affected by the pressure, so in any case of irregular supply, the gear pump is also preferred.
Common external gear pump applications include but are not limited to various fuel oil and lubricating oil chemical additives and polymer stoichiometric chemical mixing and mixing (dual pump) industrial and mobile hydraulic applications (logarithmic separator, elevator, etc.) acid and alkali (stainless steel or composite materials) low volume transportation or applications
Loader |
roller |
heavy machinery |
mining machinery |
How does a gear pump work?
Gear pumps use the actions of rotating cogs or gears to transfer fluids. The rotating element develops a liquid seal with the pump casing and creates suction at the pump inlet. Fluid, drawn into the pump, is enclosed within the cavities of its rotating gears and transferred to the discharge. There are two basic designs of gear pumps: external and internal
Differences between hydraulic piston pump and hydraulic gear pump
Both types of pumps transmit energy through hydraulic fluid and generate mechanical force when needed. Piston pumps usually use reciprocating motion to produce rotation along the axis. Some piston pumps have variable displacement, while others have a fixed displacement design.
Gear pumps use gears or gears to deliver fluid. The gears are closely aligned to create suction when drawing in and out of liquids. Gears can be internal or external, depending on their application. They always have a fixed displacement, so a separate pump or valve is required to control the displacement.
Advantages of the piston pump and gear pump
The hydraulic piston pump has the highest rated pressure. Select a pump family from our piston pump family and see the maximum psi for each type of pump. Typically, these hydraulic systems can reach 4000 psi. This allows you to pump hydraulic oil to a level that can power heavy lifts, presses, shovels, and other components.
Piston pumps have complex internal components that usually allow them to change the displacement per revolution. When you choose Panagon Systems hydraulic piston pump, you have more control and customization than a gear pump. All these complexities and pressures are accompanied by higher upfront costs, but the improvement of efficiency often makes them better investments for long-term production.
The maximum pressure of a gear pump is usually 3000 psi. Although this is sufficient to power some machinery, it may not have the necessary power to operate the largest presses and other industrial equipment. The gear pump is a more affordable option, so you don't have to do much maintenance on it. Unfortunately, it may not have the maximum operational pressure you need to stay ahead of the industry. The gear pump also lacks the ability to change the system displacement.
Additional information
Edited | Miya |
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