Safety & Relief Valves

Frigate’s optimized valve designs feature balanced blowdown and tight seating to minimize fluid venting during pressure relief. This reduces waste, lowers emissions, and helps maintain compliance with environmental standards. 

safety & relief valves

Our Clients

Trusted by Engineers and Purchasing Leaders 

Our Safety & Relief Valves Products

Explore our range of high-quality Safety & Relief Valves today.

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See how global OEMs and sourcing heads describe their experience with our scalable execution.

We export to 10+ countries

Frigate’s Global Presence

Frigate takes pride in facilitating “Make in India for the globe“.  As our global network of Frigaters provides virtually limitless capacity, and through our IoT enabled platform your parts go directly into production. By digitally and technologically enabling “the silent pillars of the economy” MSME and SME manufacturing industries, we are able to tap the huge potential for manufacturing to bring the best results for our clients.

safety & relief valves

100,000+

Parts Manufactured

250+

Frigaters

2000+

Machines

450+

Materials

25+

Manufacturing Process

Industry Applications

Petrochemical Refining

Prevent catastrophic failures by controlling pressure in fractionation columns, storage tanks, and heat exchangers under variable operating conditions. 

Compressed Air Systems

Protect compressors and piping networks by venting excess pressure during sudden load changes or system malfunctions. 

Cryogenic Storage

Maintain safe pressure levels in liquefied gas tanks, preventing overpressure from thermal expansion or system faults. 

Aerospace Industry

Regulate pressure in fuel, hydraulic, and pneumatic systems to ensure operational safety during flight conditions. 

Industrial Gas Production

Control pressure in gas cylinders and pipelines, ensuring containment integrity and safe handling of high-pressure gases. 

Mining Operations

Protect slurry pumps and pressurized vessels from pressure spikes caused by process variations and equipment cycles. 

safety & relief valves
safety & relief valves
safety & relief valves
safety & relief valves

Easy Maintenance for Maximum Uptime

Our valves are designed to reduce maintenance time and effort, even in tight or hard-to-reach spaces. Modular components and tool-less servicing simplify repairs and adjustments, minimizing downtime. 

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How does valve spring material selection impact long-term set pressure stability under cyclic loading?

The spring material must have excellent fatigue resistance to maintain consistent force after thousands of pressure cycles. Materials like Inconel X750 are commonly used because they resist relaxation and corrosion, preserving set pressure accuracy. Poor material choice leads to spring creep, causing set pressure drift and premature valve failure. Selecting the right spring alloy ensures the valve reliably opens at the designated pressure throughout its service life.

What role do finite element analysis (FEA) and CFD simulations play in valve design optimization?

To prevent structural failure, FEA helps engineers assess mechanical stresses on valve components under extreme pressure and temperature conditions. CFD simulations analyze fluid flow patterns inside the valve to minimize turbulence, pressure drops, and noise during operation. Combining these tools optimizes material use and ensures reliable performance under varying process conditions. This approach reduces the need for physical prototyping and accelerates product development. 

How does valve trim design influence abrasive media's erosion resistance and lifespan?

Valve trims made from hardened alloys or coated with tungsten carbide reduce surface wear caused by abrasive particles in the flow stream. The trim geometry is designed to reduce velocity hotspots and direct flow paths to minimize erosion. These design choices prevent premature thinning of critical parts, extending valve lifespan significantly. Proper trim design is essential for maintaining valve integrity in harsh industrial environments.

Why is the control of hysteresis critical in precision pressure relief valves, and how is it achieved?

Hysteresis—the difference between opening and closing pressures—must be minimized to ensure precise pressure control. It is controlled by using high-quality, low-friction materials for seals and poppet guides and optimized spring preload settings. Minimizing hysteresis prevents pressure fluctuations and reduces wear on valve components. This ensures stable and repeatable valve operation over millions of cycles.

How do dynamic loading conditions affect valve sealing performance, and what engineering measures mitigate these effects?

Dynamic pressure changes and flow-induced vibrations can cause valve seats to deform or loosen, leading to leaks. To counter this, engineers use highly resilient flexible seat materials and apply precision machining to ensure tight tolerances. Additionally, valve bodies may incorporate damping features to absorb vibrations and maintain seal integrity. These engineering solutions help maintain leak-tight performance even under rapidly changing pressures.

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LOCATIONS

Global Sales Office

818, Preakness lane, Coppell, Texas, USA – 75019

Registered Office

10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

Other Locations

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