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CRYOGENIC VALVE DJ 10PH PH1
CRYOGENIC VALVE DJ 10PH PH1

CRYOGENIC VALVE DJ 10PH PH1

MOQ : 1 Unit

CRYOGENIC VALVE DJ 10PH PH1 Specification

  • Capacity
  • Up to 20 bar
  • Weight
  • Approx. 1.2 kg
  • Color
  • Metallic Silver
  • Application
  • LNG, Liquid Nitrogen, Cryogenic Storage
  • Noise Level
  • Low
  • Size
  • DN10
  • Thickness
  • Standard Industrial
  • Control System
  • Hand Operated
  • Automatic Grade
  • Manual
  • Processing Type
  • Cryogenic Valve
  • Material
  • Stainless Steel
  • Pressure Rating
  • PN40
  • End Connection
  • Welded or Flanged
  • Industry Standards
  • CE Marked
  • Suitable Media
  • Cryogenic Liquid Gases (LOX, LNG, LIN, LAR)
  • Seat Material
  • PTFE
  • Design Standard
  • BS6364, DIN EN 1626
  • Mounting
  • Horizontal / Vertical
  • Stem Material
  • Stainless Steel
  • Type
  • Angle Valve
  • Operating Temperature
  • -196°C to +80°C
  • Body Material
  • SS304/SS316
  • Flow Direction
  • Uni-directional
  • Leakage Class
  • Class VI
  • Handle Type
  • Lever
 

CRYOGENIC VALVE DJ 10PH PH1 Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • FOB Port
  • SHANGHAI
  • Payment Terms
  • Telegraphic Transfer (T/T)
  • Supply Ability
  • 50 Units Per Month
  • Delivery Time
  • 7 Days
  • Sample Available
  • Yes
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • wooden box
  • Main Domestic Market
  • All India
  • Certifications
  • CE
 

About CRYOGENIC VALVE DJ 10PH PH1

Nominal Pressure:4.0Mpa
Design Temperature: -196+85 Suitable Media: LNG, LO2, LN2, LAr, CO2
Materials of Main Parts:
Body: HPb59-1
Stem: HPb59-1
Handwheel: ZL102
Disc Seals: PCTFE



Superior Cryogenic Performance

Designed to operate efficiently in extreme temperatures as low as -196C and as high as +80C, the DJ 10PH PH1 valve guarantees safe and reliable flow isolation or control for cryogenic liquids. Its uni-directional flow design and lever-operated manual control provide added stability in demanding environments such as LNG facilities and cryogenic storage.


Certified to International Standards

The DJ 10PH PH1 meets stringent industry standards, including BS6364 and DIN EN 1626, and is CE marked, assuring global compliance for safety and reliability. Its welded or flanged connections, robust build, and low maintenance requirements make it a preferred choice among international manufacturers, distributors, and exporters.

FAQ's of CRYOGENIC VALVE DJ 10PH PH1:


Q: How does the CRYOGENIC VALVE DJ 10PH PH1 ensure leak-tight performance in cryogenic applications?

A: The valve is engineered with Class VI leakage standards and utilizes PTFE for the seat and stainless steel for the stem, delivering exceptional leak-proof sealing and reliable performance at pressure ratings up to PN40, even under cryogenic temperatures.

Q: What is the recommended process for installing the CRYOGENIC VALVE DJ 10PH PH1?

A: Installation is straightforward, supporting both horizontal and vertical mounting, with the option for welded or flanged end connections. It is crucial to ensure proper alignment for the uni-directional flow and secure the valve manually using its lever handle.

Q: When should this valve be used in cryogenic systems?

A: The DJ 10PH PH1 is ideal for use whenever precise flow isolation or control is required for cryogenic liquid gases, including in storage, distribution, or transfer of LNG, liquid nitrogen, or liquid argon, especially within temperature ranges of -196C to +80C.

Q: Where can the CRYOGENIC VALVE DJ 10PH PH1 be effectively deployed?

A: This valve is suited for applications in cryogenic storage facilities, LNG processing plants, and industries dealing with liquefied gases. Its CE marking makes it suitable for international markets, including China-based operations.

Q: What are the usage benefits of this manual angle valve in industrial settings?

A: With low noise levels, durable stainless steel construction, and robust leakage prevention, this valve ensures smooth manual control and longevity, supporting safe handling of volatile cryogenic media and reducing maintenance needs.

Q: How does compliance with BS6364 and DIN EN 1626 benefit operators?

A: Compliance provides operators with assurance of reliable operation, internationally recognized safety, and compatibility with various cryogenic system standards, facilitating easy integration and consistent performance.

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