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Cryogenic Globe Valve

Introduction

Cryogenic Globe Valve are designed for regulating the flow of liquefied gases and fluids at extremely low temperatures, typically below -150°C (-238°F). These valves are engineered to perform reliably in cryogenic applications, where conventional valves might fail due to the risk of thermal expansion or leakage. Made from specialized materials such as stainless steel, cryogenic alloys, or other low-temperature resistant materials, cryogenic globe valves offer excellent sealing performance under extreme conditions. Their unique design ensures tight shutoff, precise throttling, and reliable flow control for applications that require high levels of safety and performance.

These valves are commonly used in industries such as LNG (Liquefied Natural Gas), space exploration, cryogenic storage, and medical gas systems, where precise regulation of cryogenic fluids is necessary. The robust construction of cryogenic globe valves ensures they can withstand thermal cycling, pressure changes, and the challenges of handling low-temperature fluids, making them indispensable in critical cryogenic systems.

Applications

Cryogenic Globe Valve is trusted across various industries for its precision, durability, and reliability. Explore its wide-ranging applications below:

LNG (Liquefied Natural Gas) Industry icon

LNG (Liquefied Natural Gas) Industry

Regulates the flow of LNG in storage and transportation systems, ensuring efficient flow control and preventing leakage at cryogenic temperatures.

Space Exploration Industry icon

Space Exploration Industry

Used in rocket propulsion systems and spacecraft for controlling the flow of cryogenic fuels such as liquid oxygen and hydrogen.

Cryogenic Storage Systems icon

Cryogenic Storage Systems

Regulates the flow of cryogenic liquids in storage tanks, ensuring tight seals and efficient operation in low-temperature environments.

Medical Gas Industry icon

Medical Gas Industry

Used in cryogenic medical gas storage and distribution systems, such as oxygen and nitrogen tanks, to ensure safe and controlled release of cryogenic gases.

Food & Beverage Industry icon

Food & Beverage Industry

Controls the flow of cryogenic liquids like liquid nitrogen in food freezing and preservation processes, ensuring safety and precise flow regulation.

Dimensional Details

Threaded Valve

Application Standards

  • Design and Manufacture Conform to:
    • API 602
  • Connection Ends Conform to:
    • Screw ends dimension conform to ANSI B16.11; JB/T1751
    • Screw ends dimension conform to ANSI B1.20.1; JB/T7306
    • Test and inspection conform to ANSI B16.25; JB/T12224
    • Structure features conform to ANSI B16.5; JB79
  • Test and Inspection Conform to:
    • API598, GB/T13927, JB/T9092
  • Structure Features:
    • Bolted bonnet, outside screw and yoke, Welded bonnet, outside screw and yoke
  • Materials:
    • Conform to ANSI/ASTM
  • Main Materials:
    • LF2; F3; 304(L); 316(L); F347; F321; F51;

Carbon steel temperature-pressure rate

CL150-285P.S.I @ 100 FCL300-740P.S.I @ 100 F CL600-1480P.S.I @ 100 F CL800-1975P.S.I @ 100 F CL1500-3705P.S.I @ 100 F

No.Part NameA105/F6aA105/F6aHFSLF2/304LF3/304F304(L)/304(L)F316(L)/316(L)F51/F51
1Body----LF2LF3F304(L)F316(L)F51
2Seat ring----304304304(L)316(L)F51
3Wedge disc----F304F304F304(L)F316(L)F51
4Stem----304304304(L)316(L)F51
5Gasket----304+
Flexible graphite
304+
Flexible graphite
304+
Flexible graphite
316+
Flexible graphite
316+
Flexible graphite
6Bonnet----LF2LF3F304(L)F316(L)F51
7Bolt----L7L7B8B8B8
8Pin----410410304304304
9Gland----304304304(L)316(L)F51
10Gland eyebolt----L7L7B8(M)B8(M)B8(M)
11Gland flange----LF2LF3F304F304F304
12Hex nut----448(M)8(M)8(M)
13Stem nut----420420420420420
14Locking Nut----3535353535
15Nameplate----ALALALALAL
16Handwheel----A197A197A197A197A197
17Lubricating Gasket----410410410410410
18Packing----GraphiteGraphiteGraphiteGraphiteGraphite
  • CL800 Bolted bonnet cryogenic extended bonnet full port & reduced port, OS & Y CL800 Threaded, butt-welded or socket welded ends; design to BS5352
CL800
Specification (NPS)R.P--1/23/411 1/41 1/22
F.P1/43/81/23/411 1/41 1/2
Face to face (mm)L797992111120152172
Handwheel diameter (mm)W100100100125160160180
Center height (open) (mm)H-196℃
-101℃
390390415430460490505
-40℃350350400410425450480
Flow port dimension (mm)d7.09.01317.5233035
Weight(Kg)7.27.27.29.510.813.519.8
  • CL1500 Bolted bonnet cryogenic extended bonnet full port & reduced port, OS & Y CL800 Threaded, butt-welded or socket welded ends; design to BS5352
CL1500
Specification (NPS)R.P--1/23/411 1/41 1/222 1/2
F.P1/43/81/23/411 1/41 1/22
Face to face (mm)L92111111120152172220--
Handwheel diameter (mm)W125125125160160180200--
Center height (open) (mm)H-196℃
-101℃
370370370410410474546--
-40℃350350400410425450480--
Flow port dimension (mm)d12121520283240--
Weight(Kg)9.59.59.510.813.519.829--
  • CL150-300-600 Bolted bonnet cryogenic extended bonnet full port & reduced port, OS & Y CL800 Threaded, butt-welded or socket welded ends; design to BS5352
CL150-300-600
Specification (NPS)R.P1/43/81/23/411 1/41 1/22
Face to face (mm)L (RF)
L1 (RF)
CL150----108118127--165203
CL300----153178203--229267
CL600----165191216--241292
Handwheel diameter (mm)W----100100125--160180
Center height (open) (mm)H-196℃
-101℃
----390415430--490505
-40℃----350400410--450480
Flow port dimension (mm)d----9.01317.5--3035
Weight (Kg)CL150----55.88.6--13.824.3
CL300----5.86.810.3--19.325.8
CL600----6.37.310.6--20.326.8
  • CL1500 Bolted bonnet cryogenic extended bonnet full port & reduced port, OS & Y CL800 Threaded, butt-welded or socket welded ends; design to BS5352
CL1500
Specification (NPS)R.P--3/81/23/411 1/41 1/2
Face to face (mm)L----216229254280368
Handwheel diameter (mm)W----125125160160200
Center height (open) (mm)H-196℃
-101℃
----370370410410546
-40℃----350400410425480
Flow port dimension (mm)d----1215202840
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