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Flomatic

Flomatic 2425XTF 812XTF 2" Stainless Steel Foot Valve

Flomatic 2425XTF 812XTF 2" Stainless Steel Foot Valve

Regular price $1,170.00 USD
Regular price $1,560.00 USD Sale price $1,170.00 USD
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SKU:2425XTF

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The Flomatic 2425XTF 2" 812XTF stainless steel foot valve is a high-performance spring-assisted foot valve designed for demanding water and process applications where corrosion resistance and elevated temperature capability are important. This model features an all 316 stainless steel body and internal components, a threaded female NPT connection, metal-to-metal seating, and a Teflon O-ring. It is rated for a maximum working pressure of 300 psi and a maximum temperature of 400°F (200°C).

Specifications:

Max Pressure: 300 psi

Max Temperature: 400°F (200°C)

Body: 316 stainless-steel

Internals: 316 stainless-steel

Seal: Teflon O-ring

Seat: Metal-to-metal

Connection: 2" FNPT threaded (ANSI B1.20.1)

Weight: 14 lbs

Operation: The 812XTF foot valve is installed at the end of a suction line to help maintain pump prime and prevent backflow when the pump is shut down. The internal spring-assisted poppet and metal-to-metal seating provide quick, positive closure as flow reverses, helping to limit backflow and protect upstream equipment. When forward flow resumes, the valve opens smoothly to restore flow through the suction line.

Construction: All 316 stainless steel construction provides excellent resistance to corrosion and erosion in aggressive water, process, and industrial environments. The metal-to-metal seating and Teflon O-ring support tight shutoff and high-temperature operation, while the stainless-steel screen helps keep larger debris from entering the suction piping. The FNPT threaded ends simplify installation into threaded stainless steel piping systems.

Applications: High-temperature and corrosive water service, industrial and commercial pumping systems, process and utility lines, and other applications where a robust all-stainless-steel foot valve is required to help maintain prime and reduce backflow.

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