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Manual hydraulic pump is a positive-displacement hydraulic power source driven purely by human power without electricity or air supply, widely used in field operations, emergency repair, industrial assembly and testing scenarios.
I. Basic Definition and Working Principle
Definition
Driven by a handle, the piston/plunger reciprocates to periodically change the pump chamber volume, drawing in and discharging hydraulic oil, converting human power into high-pressure energy for the hydraulic system.
Built-in check valves control flow direction, and safety valves prevent overpressure.
Working Cycle
Oil Suction: When the handle is lifted, the pump chamber expands to create a vacuum, and oil enters through the suction check valve.
Oil Discharge: When the handle is pressed down, the pump chamber contracts and oil pressure rises, flowing into the execution system through the discharge check valve.
Two-stage pump (common in high-pressure models): Low-pressure large flow for rapid advance, high-pressure small flow for pressure holding / precision control, balancing efficiency and pressure.
II. Core Structure Components
Pump body (cylinder barrel), piston/plunger, operating handle;
Check valve group (anti-backflow);
Safety valve / relief valve (overpressure protection, typically set at 63MPa, etc.);
I. Basic Performance Parameters (Core Selection Basis)
Parameter Category
Specification Range
Selection Instructions
Application Matching Examples
Rated Working Pressure
100-300MPa (Standard), 3000-40000psi (Graded)
Should be 10%-20% higher than the maximum system working pressure; select 20000-40000psi models for ultra-high pressure scenarios (e.g., aerospace testing)
Aluminum alloy (lightweight) for standard environments; 316 stainless steel (temperature resistance: -200℃ to 800℃) for corrosive/high-temperature environments
Chemical Industry → 316 Stainless Steel; Heavy Machinery → Steel