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The gauge isolator valve protects the pressure gauge from damage due to pressure surges, hydraulic shock and mechanical vibrations. The fluid is completely isolated from the gauge and connected directly to the gauge port as long as the knob is kept pressed thereby giving instant and accurate readings on the gauge.
A pressure switch is an instrument that automatically senses a change in pressure and opens or closes an electrical switching element, when a predetermined pressure point is reached. A pressure-sensing element is that part of a pressure switch that moves due to the change in pressure.
They are suitable for pumping low viscosity fluids. These pumps improve flow rate by reducing the internal mechanical losses and damping. An electric motor is coupled to the pump rotor to create a rotary motion. As the rotor rotates, the fluid enters the pump. This fluid flows into the hydraulic vane pump chambers. The volume of the vane chambers at the inlet sections is larger than that at the outlet section of the pump. The decrease in volume helps the fluid to develop a high pressure as it exits the pump. As the rotor rotates, the pump vanes tend to move outwards. This is due to the centrifugal force and the symmetrical shape of the pump casing. In the inlet, the vanes create a vacuum, causing a pressure difference thus, it draws fluid into the pump.
A hydraulic cooler is a device designed to prevent oil used in hydraulic systems from overheating. This is a critical function in hydraulic systems, as overheating of the oil can lead to a drop in system efficiency and excessive wear of the system components in general due to reduced oil viscosity.
A hydraulic cooler is a device designed to prevent oil used in hydraulic systems from overheating. This is a critical function in hydraulic systems, as overheating of the oil can lead to a drop in system efficiency and excessive wear of the system components in general due to reduced oil viscosity.
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