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  2. File:Gear pump exploded.svg - Wikipedia

    en.wikipedia.org/wiki/File:Gear_pump_exploded.svg

    English: An exploded view of an external gear pump by Duk, vectorised by Д.Ильин and made multilingual by cmglee. Русский: Конструкция шестерённой гидромашины — насоса или двигателя.

  3. Gear pump - Wikipedia

    en.wikipedia.org/wiki/Gear_pump

    The gear pump was invented around 1600 by Johannes Kepler. [2] Gear pumps are also widely used in chemical installations to pump high-viscosity fluids. There are two main variations: external gear pumps which use two external spur gears, and internal gear pumps which use an external and an internal spur gear (internal spur gear teeth face ...

  4. Hydraulic pump - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_pump

    Fluid flow in an external gear pump. A hydraulic pump is a mechanical source of power that converts mechanical power into hydraulic energy (hydrostatic energy i.e. flow, pressure). Hydraulic pumps are used in hydraulic drive systems and can be hydrostatic or hydrodynamic. They generate flow with enough power to overcome pressure induced by a ...

  5. Hydraulic machinery - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_machinery

    An exploded view of an external gear pump. Hydraulic pumps supply fluid to the components in the system. Pressure in the system develops in reaction to the load. Hence, a pump rated for 5,000 psi is capable of maintaining flow against a load of 5,000 psi. Pumps have a power density about ten times

  6. Pump - Wikipedia

    en.wikipedia.org/wiki/Pump

    Rotary-type positive displacement: internal and external gear pump, screw pump, lobe pump, shuttle block, flexible vane and sliding vane, circumferential piston, flexible impeller, helical twisted roots (e.g. the Wendelkolben pump) and liquid-ring pumps; Reciprocating-type positive displacement: piston pumps, plunger pumps and diaphragm pumps

  7. Micropump - Wikipedia

    en.wikipedia.org/wiki/Micropump

    The compression ratio of the micropump as one of the critical performance indicator is defined as the ratio between the stroke volume, i.e. fluid volume displaced by the pump membrane over the course of the pump cycle, and the dead volume, i.e. the minimum fluid volume remaining in the pump chamber in pumping mode. [15]