Cryogenic Valves Supplier

Cryogenic valves are a specialized type of valve used in extremely cold temperatures. These valves control the flow of cryogenic liquids and gasses, such as liquid nitrogen, oxygen, and hydrogen. Cryogenic valves are essential in various industries, from aerospace to food processing.
The most common type of Cryogenic Valve is the bellows-sealed valve. Bellows-sealed valves use a flexible diaphragm to seal off the stem opening and create a tight seal even at extreme temperatures. That makes them ideal for applications requiring tight shutoff at low temperatures. Another type of cryogenics valve is the globe valve, which controls flow using an adjustable disk inside the valve's body. Globe valves are handy for high-pressure applications requiring precise flow control. At Metcore Steel, we pride ourselves on providing excellent customer service and offering a wide range of products, including Cryogenic valves and Stainless Steel 321 Bar.

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Cryogenic Valves are used in many different industries and applications. They can be found in medical laboratories for controlling nitrogen gas levels during blood tests or other procedures; they can also be used in aerospace technology for controlling fuel lines on rockets and satellites; they are also used in food processing plants for controlling liquid nitrogen levels when freezing food products; and they can even be found on tankers carrying liquified natural gas (LNG). The versatility of these valves makes them invaluable components in many industrial applications. In addition to our range of Cryogenic valves we also offer a variety of Duplex Steel S31803 Bars to meet your piping needs.

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One significant benefit of cryogenics valves is their ability to maintain tight shutoff even at shallow temperatures—a feature essential for many industrial processes and applications. Additionally, these valves provide excellent durability thanks to their advanced construction materials—such as stainless steel—which makes them resistant to corrosion and other forms of wear and tear. And because they have fewer moving parts than other valves, they require less maintenance over time, making them cost-effective solutions and short-term investments into industrial processes or projects requiring extensive use of cryogenics materials or gasses/liquids such as liquid nitrogen, etc.

Cryogenic valves provide many advantages compared to traditional valve systems due to their ability to maintain tight shutoff even at shallow temperatures and remain durable despite corrosive environments or extended periods without maintenance or repair work done on them regularly. They are also versatile enough to be used in various industries, from medical laboratories up. Aerospace engineering projects involving rocket fuels being controlled via proper coolant handling techniques and using these specialized tools like cryogenics valves, thus making them an essential component from various points. Different technological fields need these specific tools when dealing with extreme cold temperature ranges to keep things running safely. Under such conditions, either due solely based upon temperature-related factors or any other external variables outside their normal range. Operating parameters that affect how they usually function under normal circumstances outside those considered somewhat extraordinary yet necessary enough.

The main difference between cryogenic and non-cryogenic valves is the temperature range they can operate in. Cryogenic valves are designed to withstand extremely low temperatures, typically below -150°C (-238°F), whereas non-cryogenic valves operate at higher temperatures. Cryogenic valves are commonly used in applications that involve storing & transporting liquefied gases, such as oxygen, nitrogen, and liquefied natural gas (LNG).
Cryogenics is the study of materials and systems at extremely low temperatures. Cryogenic technologies are used in various applications, including medical research, aerospace, and energy production. For example, cryogenic technology is used in the medical field to preserve tissues, organs, and other biological samples. In aerospace, cryogenic fuels are used to power rockets & other spacecraft.
Cryogenic valves are typically made from materials that can withstand extremely cold temperatures, such as stainless steel or special alloys. These materials have excellent strength and resistance to corrosion at low temperatures, making them suitable for cryogenic applications.

Cryogenic Valves Specification

Design Standard :

Testing Standard :

Face To Face :

End Connection :

Pressure – Temperature Chart :

API 598/BS : 5146

API 598 /BS EN 12266-1

ASME B 16.10

Flanged End - ASME B 16.5 / Butt Weld End – ASME B 16.25

ASME B 16.34

2” – 10” - Class 150, 300, 600 / 2” – 4” - Class 900 & 1500

Available Types of Cryogenic Valves

Bsp Cryogenic Valves
  • 150# Class Bsp Cryogenic Valves
  • 600# Class Bsp Cryogenic Valves
  • 1500# Class Bsp Cryogenic Valves
  • Ball Bsp Cryogenic Valves
  • Duplex Steel Bsp Cryogenic Valves
  • Carbon Steel Bsp Cryogenic Valves
  • High Nickel Alloy Bsp Cryogenic Valves
Investment Casting Cryogenic Valves
  • 150# Class Investment Casting Cryogenic Valves
  • 600# Class Investment Casting Cryogenic Valves
  • 1500# Class Investment Casting Cryogenic Valves
  • Ball Investment Casting Cryogenic Valves
  • Duplex Steel Investment Casting Cryogenic Valves
  • Carbon Steel Investment Casting Cryogenic Valves
  • High Nickel Alloy Investment Casting Cryogenic Valves
TC Ball Valve
  • 150# Class TC Ball Valve
  • 600# Class TC Ball Valve
  • 1500# Class TC Ball Valve
  • Ball TC Ball Valve
  • Duplex Steel TC Ball Valve
  • Carbon Steel TC Ball Valve
  • High Nickel Alloy TC Ball Valve
Pressure-3 Way Ball Valve
  • 150# Class Pressure-3 Way Ball Valve
  • 600# Class Pressure-3 Way Ball Valve
  • 1500# Class Pressure-3 Way Ball Valve
  • Stainless Steel Pressure-3 Way Ball Valve
  • Duplex Steel Pressure-3 Way Ball Valve
  • Carbon Steel Pressure-3 Way Ball Valve
  • High Nickel Alloy Pressure-3 Way Ball Valve

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