Description of PLP10 Series Gear Pump
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Type:Gear Pump (Aluminum Housing) |
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Displacement and Max Pressure: 4.27 cc/rev, 250bar |
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Speed Range:Min 650 rpm, Max 4000 rpm |
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Shaft End:European Standard, Taper 1:8, Shaft Diameter 9.35 mm |
PLP10 Series Gear Pump Parameter Table:

roup 1, 2 and 3 with displacements from 0.07 in3 /rev (1,07 cm3 /rev) to 5.56 in3 /rev (91.10 cm3 /rev). z Drive shafts, mounting flanges and ports according to the international standards. z Combination of multiple pumps in standard version, common inlet and separated stages. z Integrated outboard bearings for heavy duty application. z Many types of built-in valves.
The Advantage of the PLP10 Series Pump :
Compact and Adaptable: The aluminum housing makes it lightweight (<1kg). Its simple structure offers good tolerance to fluid contamination and strong self-priming capability, making it easy to install and maintain in tight spaces.
Reliable Performance, Wide Speed Range: With a wide speed range from 650 rpm to 4000 rpm, it can adapt to different prime mover speeds and flow requirements. The maximum working pressure of 250 bar is suitable for medium to high-pressure hydraulic systems.
Flexible Configuration: The flange, shaft, and ports conform to standard interfaces, and the rotation direction is adjustable, facilitating system integration and replacement.
Applicable Environment of PLP10 Gear Pump:
Mobile & Industrial Applications: Casappa gear pumps are widely used in construction machinery, agricultural machinery, material handling equipment, and various industrial machines.
Open Hydraulic Systems: This pump is typically used in open circuits to provide pressure oil to actuators like hydraulic cylinders or motors.
Consider Its Limitations: Being a fixed-displacement gear pump, it has inherent characteristics such as unbalanced radial forces, relatively higher flow pulsation, and higher noise compared to some other pump types. Therefore, it is best suited for applications where cost, compactness, and ease of maintenance are priorities, and where extreme low-noise or minimal flow ripple is not the primary requirement.
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