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  2. Gear pump - Wikipedia

    en.wikipedia.org/wiki/Gear_pump

    Some internal gear pumps have an additional, crescent-shaped seal (shown above, right). This crescent functions to keep the gears separated and also reduces eddy currents. Pump formulas: Flow rate = pumped volume per rotation × rotational speed; Power = flow rate × pressure; Power in HP ≈ flow rate in US gal/min × (pressure in lbf/in 2)/1714

  3. Torque converter - Wikipedia

    en.wikipedia.org/wiki/Torque_converter

    The key to the torque converter's ability to multiply torque lies in the stator. In the classic fluid coupling design, periods of high slippage cause the fluid flow returning from the turbine to the impeller to oppose the direction of impeller rotation, leading to a significant loss of efficiency and the generation of considerable waste heat ...

  4. Rotary valve - Wikipedia

    en.wikipedia.org/wiki/Rotary_valve

    A rotary valve (also called rotary-motion valve) is a type of valve in which the rotation of a passage or passages in a transverse plug regulates the flow of liquid or gas through the attached pipes. [1] The common stopcock is the simplest form of rotary valve. Rotary valves have been applied in numerous applications, including:

  5. Rotary union - Wikipedia

    en.wikipedia.org/wiki/Rotary_union

    A rotary union is a union that allows for rotation of the united parts. It is thus a device that provides a seal between a stationary supply passage (such as pipe or tubing) and a rotating part (such as a drum, cylinder, or spindle) to permit the flow of a fluid into and/or out of the

  6. Flow control valve - Wikipedia

    en.wikipedia.org/wiki/Flow_control_valve

    Process plants consist of hundreds, or even thousands, of control loops all networked together to produce a product to be offered for sale. Each of these control loops is designed to keep some important process variable, such as pressure, flow, level, or temperature, within a required operating range to ensure the quality of the end product.

  7. Rotodynamic pump - Wikipedia

    en.wikipedia.org/wiki/Rotodynamic_pump

    A rotodynamic pump is a kinetic machine in which energy is continuously imparted to the pumped fluid by means of a rotating impeller, propeller, or rotor, in contrast to a positive-displacement pump in which a fluid is moved by trapping a fixed amount of fluid and forcing the trapped volume into the pump's discharge. [1]

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