SS V2F-FN8

Valve Manifolds

The high-pressure two-valve manifold is made of high-strength alloy steel or stainless steel, specifically designed for high-pressure conditions.

Parameter

¡ð Working pressure: 6000PSI (413bar), up to 10000PSI (689bar)

¡ð PTFE packing: -38¡æ to 180¡æ (-100¨H to 356¨H)

¡ð PPL Packing: -38¡æ to 280¡æ (-100¨H to 536¨H)

¡ð Graphite packing: -24¡æ to 480¡æ (-75¨H to 896¨H)

¡ð Connection port: 1/2NPT (FXM)

¡ð Flow passage bore diameter DN: 4.0mm (0.157in.)

¡ð Valve body material: 316 stainless steel, Hastelloy, Monel, and other special materials


Performance

¡ð Stainless steel up to 6000 psi (413 bar)

¡ð Monel 400 up to 5000 psi (345 bar)

¡ð Hastelloy C-276 up to 6000 psi (413 bar)

¡ð The two-valve manifold has a blowdown function

¡ð Instrument connection port: NPT, BSPP, M20X1.5 are available for selection

¡ð Connection port: 1/2NPT (FXM)

¡ð Drain port: 1/4NPT (F)

¡ð The handle is available in stainless steel and aluminum, with multiple colors to choose from.

¡ð The pressure-bearing transmission threads of the valve stem and valve stem nut are both processed using extrusion technology.

¡ð Valve core is surfaced with Stellite nickel-based alloy

¡ð Each valve head of the two-valve manifold is equipped with a stainless steel function tag, and the valve stem is equipped with a dust cover as standard.

¡ð Each valve undergoes a sealing test before leaving the factory, and the test is conducted at a water pressure of 1.5 times the rated working pressure, with a 5% margin.


Application

The high-pressure two-valve manifold is made of high-strength alloy steel or stainless steel, specifically designed for high-pressure conditions, and features excellent pressure-bearing capacity and sealing reliability. Its structure integrates a stop valve and a drain valve, facilitating isolation, pressure relief, and maintenance operations for pressure instruments. It is widely used in high-pressure measurement systems in industries such as petroleum, natural gas, chemical, and power, ensuring safe and stable operation and effectively enhancing instrument service life and system maintenance efficiency.

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