Ultra Low Temperature Industrial Valve

Ultra Low Temperature Industrial Valve

The Ultra Low Temperature Industrial Valve delivers reliable isolation and flow control for systems handling cryogenic media. Built with low-temperature resistant stainless steel and specialized sealing components, the design maintains structural stability and sealing integrity under extreme thermal conditions.
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Description

The Ultra Low Temperature Industrial Valve delivers reliable isolation and flow control for systems handling cryogenic media. Built with low-temperature resistant stainless steel and specialized sealing components, the design maintains structural stability and sealing integrity under extreme thermal conditions.

Suitable applications include liquid gas storage, industrial gas processing, and specialized process pipelines requiring strict containment and operational safety.

 

Product Features

 

Low Temperature Material Structure
The valve body utilizes low-temperature stainless steel to preserve mechanical strength and dimensional stability during severe temperature fluctuations.
Extended Bonnet Configuration
An extended bonnet isolates the packing area from the cold fluid zone, mitigating heat transfer impacts to maintain consistent stem sealing performance.
Cryogenic Sealing Assembly
Engineering configurations provide stable shutoff behavior under low-temperature states to support dependable continuous operation.
Internal Cleanliness Control
Internal components undergo processing to meet strict purity standards for cryogenic service, minimizing contamination risks in sensitive media.

 

Technical Specifications

 

Parameter

Specification

Product Type

Ultra Low Temperature Industrial Valve

Applicable Medium

Liquid oxygen, liquid nitrogen, liquid argon, LNG, and related cryogenic fluids

Working Temperature

-196°C to +80°C

Nominal Size Range

DN15 to DN300

Pressure Rating

PN16 to PN100 / Class 150 to Class 600

Body Material

Low temperature stainless steel

Connection Type

Flanged, threaded, and welded configurations

Operation Method

Manual, pneumatic, or electric actuation options

Leakage Standard

Conforms to applicable industrial valve standards

Testing Protocols

Routine pressure and sealing performance verification

 

Design & Manufacturing Process

 

Material Selection Strategy
Metals are chosen in accordance with cryogenic service demands to retain impact toughness and structural integrity at extreme lows.
Precision Machining Operations
Components undergo controlled machining processes to secure tight dimensional tolerances for assembly alignment and tight sealing contact.
Surface Treatment Procedures
Internal surfaces receive specialized treatments to support debris-free operation in clean cryogenic flow loops.
Controlled Assembly Protocols
Assembly steps prioritize component compatibility, precise torque application, and functional verification.

 

Application Areas

 

Industrial Gas Processing
Integrated into liquid oxygen, nitrogen, and argon production, storage, and distribution infrastructure.
Cryogenic Storage Systems
Employed across storage vessels, transfer lines, and low-temperature fluid handling installations.
Energy & Process Sectors
Utilized in liquefied natural gas transport networks and industrial operations requiring strict temperature management.
Research & Laboratory Facilities
Installed in specialized test loops and scientific apparatus requiring reliable cryogenic fluid isolation.

 

Quality Control & Testing

 

Incoming Material Verification
Raw materials undergo composition and quality verification prior to production release.
Pressure & Leak Testing
Each completed valve undergoes shell pressure and seat sealing tests to confirm performance safety.
Dimensional Compliance Checks
Critical dimensions are measured against technical drawings to ensure pipeline compatibility.
Cleanliness Management
Production zones maintain strict cleanliness controls to prevent particulate introduction in cryogenic channels.

 

Customization Service

 

Dimension & Connection Adaptations
Valve face-to-face lengths, connection standards, and installation geometries adapt to project piping layouts.
Actuation Solutions
Manual handwheels can be replaced with pneumatic or electric actuators to match system automation demands.
Material Adjustments
Alloy grades can be modified based on specific fluid properties and operating environments.
Engineering & Drawing Support
Technical teams collaborate on custom configurations derived from specific customer installation requirements.

 

Certifications & Compliance

 

Quality Management System
Manufacturing processes follow ISO9001 quality management requirements.
Environmental Management
Production activities comply with ISO14001 environmental management requirements.
Occupational Safety Management
Factory operations follow ISO45001 occupational health and safety management requirements.
Product Inspection Control
Manufacturing includes inspection procedures covering materials, machining, assembly, and final testing.

 

Production Capability & Supply Support

 

Batch Manufacturing Capacity
Standardized production lines support consistent output for industrial project supply and replacement needs.
Traceability Management
Production records and test results are logged to maintain full transparency for manufactured lots.
Order Preparation
Shipments are coordinated according to technical specifications, destination regulations, and transport schedules.

 

Packaging & Transportation

 

Protective Packaging Measures
Valves receive secure crating to prevent mechanical impact or surface marring during transit.
Clean Condition Preservation
Internal flow passages are sealed to maintain cleanliness levels until on-site installation.
Export Logistics Readiness
Packaging designs conform to international shipping standards for safe global delivery.

 

FAQ

 

Q: What operational temperature range does the valve support?

A: The valve is engineered for cryogenic service down to -196°C, depending on the selected configuration and application parameters.

Q: Which fluid types are compatible with this valve?

A: It handles cryogenic liquids such as liquid oxygen, liquid nitrogen, liquid argon, and liquefied natural gas.

Q: What is the purpose of the extended bonnet?

A: It separates the packing materials from the cryogenic fluid stream to stabilize stem sealing performance.

Q: Are actuation options available?

A: Yes, manual, pneumatic, and electric actuators can be integrated based on control requirements.

Q: Can technical specifications be modified for specific projects?

A: Yes, dimensions, pressure classes, materials, and connection types are fully customizable.

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