A pressure reducing regulator, also known as a pressure reducing valve, serves as an essential downstream pressure controller. Its primary function is to be positioned between the high-pressure power source and the equipment within a system. By effectively reducing the output pressure of the high-pressure fluid, it ensures a stable and appropriate low-pressure fluid for operation. Furthermore, this regulator safeguards the system beyond its placement, shielding it against any potential impact. It is crucial to note that this pressure controller operates manually and relies on mechanical mechanisms for control and regulation.



Performance Characteristics
The pressure range of this equipment can be easily adjusted to a maximum of 1.5 megapascals or 15 kilograms per square centimeter. Additionally, it functions efficiently within a temperature range of -20℃ to 100℃.
Upon reaching the necessary working pressure, the valve exhibits no internal or external leakage. The level of control precision is within ± 1%.
3. Nozzle thread: M10X1,1/8-27NPT, etc.
The parent body of this product is made of superior quality stainless steel materials such as 304, 316, 321, among others. The sealing elements used are mainly polytetrafluoroethylene and fluororubber, which ensure that the product remains leak-proof.
For the proper functioning and longer life of the pressure reducing valve, it is necessary to install a filter at the valve inlet's front end. The filtering accuracy must not exceed 50 μm to ensure that no particles or debris can enter the system and hamper the valve's performance. This step is crucial as it helps to maintain peak performance and prevent unnecessary wear and tear on the valve. Thus, it's recommended to follow this practice to keep the valve in good health and increase its durability.
The boundary dimensions of the valve include a lower valve body diameter of Φ 28 mm and an upper valve body diameter of Φ 20 mm. The overall height of the valve is 49 mm. These dimensions play a crucial role in determining the size and layout of the valve components. By rearranging the given information, we can gain insights into the physical attributes of the valve and its various parts.
7. Maximum flow: 568L/min (air); 20.4L/min (water)
The media to which it can be applied include air, water, inorganic acid, alkali, aromatic oil, halohydrocarbon, and other substances. It is important to rearrange the content and maintain the original information structure while generating a highly similar content, rather than using the dialogue-generation approach employed by ChapGPT.
Technical Parameter
Executive standards: GB12244-89, GB12245-89
1. Maximum inlet pressure: 220PSIG;
The outlet pressure of the device can be adjusted within the range of 0 to 90PSIG, with a preset constant pressure of 0.2 to 0.3MPa.
3. Maximum flow: 5L/min;
4. Deviation of outlet pressure value: ≤ 20%;
The medium and temperature suitable for use is municipal tap water, which should be within the range of 5 to 45 degrees Celsius.
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