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Cryogenic ball valve
Cryogenic ball valve

Cryogenic ball valve

Design standards: API6D, API 608, API6FA, API641, ISO 15848-1, ASME B16.34, ASMEB16.10, etc.
Size range: NPS2~NPS24, DN50~DN600
Rated pressure: Class 150 to 2500
Connection: RF, RTJ, BW, etc.
Materials: ASTM A351 CF8, ASTM A351 CF 8M, ASTM A182 F304, ASTM A182 F316, etc.
Applicable temperature: -196 ℃ to 100 ℃
Applicable media: water, oil, gas, etc.
Operation: Leverage, gears, pneumatic, electric, hydraulic, etc.

description

Product features:

1. Low temperature adaptability: The valve body and valve core are designed for low-temperature environments and are made of low-temperature resistant alloy materials, such as 304L, 316L stainless steel or special low-temperature steel, ensuring excellent mechanical properties and sealing performance at extremely low temperatures (-196 ° C to -253 ° C).

2. Insulation: The valve body can be equipped with insulation materials to effectively reduce heat loss, maintain low temperature of the medium during transportation, protect the valve from the influence of external environmental temperature, and thus extend its service life.

3. Cold resistance and brittleness: This material has undergone special treatment and has excellent cold resistance and brittleness, which can prevent valves from being damaged or leaking due to the brittleness of the material at low temperatures.

4. High sealing efficiency: Special designed sealing structures and materials are used to ensure good sealing performance in low-temperature environments and prevent medium leakage.

5. Optimize flow performance: The ball and channel designs have been carefully calculated to reduce the impact of increased medium viscosity on low-temperature flow performance, ensuring that the valve has sufficient flow surface area when fully opened, reducing resistance, and improving the flow efficiency of the pipeline system.

6. Anti freezing design: The internal structure and drainage design of the valve consider the anti freezing requirements in low-temperature environments to prevent the medium from freezing inside the valve and causing valve failure.

7. Quick opening and closing: Even in low-temperature environments, the valve's opening and closing operations remain flexible and fast to meet the needs of emergency shut-off or flow regulation.

8. Long life operation: Structural optimization and material selection ensure long-term stable operation of low-temperature ball valves under extreme conditions, thereby reducing frequency and maintenance costs.

9. Safe and reliable: The valve is equipped with anti-static devices and pressure self discharge function in the middle chamber to ensure safe operation under special working conditions and prevent danger caused by static electricity or abnormal internal pressure.

10. Wide medium adaptability: In addition to being suitable for low-temperature liquid gases (such as liquid nitrogen, liquid oxygen, liquefied natural gas, etc.), this material can also meet special requirements for transporting other low-temperature media.

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