Globe Valve (Cryogenic)

Extended-bonnet globe valves engineered for precise control and tight shut-off in LNG, hydrogen and other cryogenic services. Designed to BS 1873 / API 623, tested to API 598 and compliant with BS 6364 / ISO 28921 for low-temperature operation.

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❄️ Cryogenic Service • Extended Bonnet

Accurate Control at Ultra-Low Temperatures

The extended bonnet keeps packing above the vapour line to minimize icing and extend sealing life. Optimized trims and guided disc deliver stable throttling and positive isolation for cryogenic pipelines, terminals and process units.


Size Range & Pressure Class

Size: 2” to 14”

Pressure Class: 150#, 300#, 600#

Soft- or hard-faced trims available per service conditions.

Materials of Construction (MOC)

Metallurgy options for corrosion resistance and low-temperature toughness:

Carbon Steel
Low Alloy Steel
Low Temperature Carbon Steel
Low Temperature Alloy Steel
Stainless Steel
Duplex & Super Duplex Steel
Inconel
Monel
Hastelloy

Trim metallurgy can be tailored for sour, erosive and cryogenic media.

Product Specifications

Size Range 2" to 14"
Class
150# 300# 600#
MOC
Carbon Steel Low Alloy Steel Low Temperature Carbon Steel Low Temperature Alloy Steel Stainless Steel Duplex & Super Duplex Steel Inconel Monel Hastelloy
End Connections / Construction
Flange End Butt Weld End Socket Welded Screwed Extended Bonnet Rising Stem
Design Standard
BS 1873 API 623 BS 6364 / ISO 28921
Testing Standard
API 598
Operation Type
Manual Gear Operated Actuator Operated
Industries
Oil & Gas Petrochemicals Chemicals & Fertilizers Green/Blue Hydrogen Power LNG FPSO Water

Why Choose Oswal Cryogenic Globe Valves?

Cryogenic-Ready Design

Extended bonnet and low-temperature tested trims for reliable sealing below −100 °C.

Standards-Compliant

Designed to BS 1873 / API 623, cryogenic to BS 6364 / ISO 28921; API 598 tested.

Precise Control

Guided disc and linear characteristics for smooth throttling and positive isolation.

Material Flexibility

CS, SS, Duplex & super alloys for corrosive and cryogenic media.

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Share size, class, end connection and media — we’ll suggest the optimal configuration.

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