The pressure regulator allows the user to adjust the air compressor pressure depending on the air tool being used.
Air flow regulator vs pressure regulator.
The accuracy of a pressure regulator is determined by charting outlet pressure versus flow rate.
For example if your shop air is 90 psig but your valve rating is 60 psig a piston regulator is useful to knock the.
Since they are more economic they make good units to regulate individual service lines rather than the main shop airline which would require a unit with a greater flow allowance.
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A simple example of a pressure reducing direct operated regulator design compared to a control valve in a control loop is shown in figure 1.
Although pressure regulators used in flowing systems inherently affect the flow by controlling the pressure they are not designed to act as flow controllers.
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These types of air pressure regulators see a lot of use in the fluid power industry as well as process control instrumentation and panels.
Less droop equals greater accuracy.
Regulators are used for gases and liquids and can be an integral device with a pressure setting a restrictor and a sensor all in the one body or consist of a separate pressure sensor controller and flow valve.
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Air regulators provide quick response and accurate pressure regulation for the most demanding industrial air preparation applications.
A pressure regulator is a valve that controls the pressure of a fluid or gas to a desired value.
Pressure regulator accuracy is defined as how much droop the device exhibits over a range of flows.
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The resulting graph shows the drop in outlet pressure as the flow rate increases.
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This phenomenon is known as droop.
Pressure regulators are not designed to control flow rates.
Placing the regulator before the valve in a pneumatic system ensures that the regulator will not be cycled or exposed to reverse flow.