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ASME B16.34 Ball Valve
ASME B16.34 Ball Valve

ASME B16.34 Ball Valve

MOQ : 5 Units

ASME B16.34 Ball Valve Specification

  • Connection
  • Flanged / Butt Weld / Socket Weld / Threaded
  • Pressure
  • 150LB to 2500LB
  • Structure
  • Floating / Trunnion Mounted
  • Channels
  • 2-way / 3-way
  • Caliber
  • Full Bore / Reduced Bore
  • Material
  • Stainless Steel / Carbon Steel / Alloy Steel
  • Power
  • Manual / Pneumatic / Electric
  • Media
  • Water / Oil / Gas / Steam
  • Temperature of Media
  • -29C to 425C
  • Port Size
  • 1/2 inch to 12 inch
  • Flange
  • ANSI B16.5 / DIN / JIS Standard
  • Finish
  • Polished / Natural
  • Application
  • Industrial / Oil & Gas / Chemical / Water Treatment
  • Ball Material
  • SS316 / SS304 / Alloy Steel
  • Face to Face Dimension
  • ASME B16.10
  • End Flange Standard
  • ASME B16.5
  • Pressure Rating
  • ANSI Class 150 / 300 / 600 / 900 / 1500 / 2500
  • Leakage Class
  • Class VI
  • Design Standard
  • ASME B16.34
  • Anti-static Device
  • Available
  • Stem Material
  • Stainless Steel or Alloy Steel
  • Body Material
  • ASTM A216 WCB / A351 CF8M / A105 / F304 / F316
  • Seat Material
  • PTFE / RPTFE / Metal Seated
  • Fire Safety
  • API 607 / ISO 10497
  • Blow-out Proof Stem
  • Provided
  • Test Standard
  • API 598 / ISO 5208
  • Operation Type
  • Lever / Gear / Actuator
  • Mounting Pad
  • ISO 5211
 

ASME B16.34 Ball Valve Trade Information

  • Minimum Order Quantity
  • 5 Units
  • Supply Ability
  • 200 Units Per Month
  • Delivery Time
  • 7 Days
 

About ASME B16.34 Ball Valve

ASME B16.34 Ball Valve

 

Size

2" to 56" (50 mm to 1400 mm)

ASME Class

Class 150 to 2500

Design Standard

API 6D


Main Feature :

·         Trunnion-mounted Ball Valve design complies to API 6D

·         Wide portfolio of Side-entry and Top-entry designs

·         Fugitive emissions

·         Soft and Metal seated valves complies to ISO 15848-1, Class AH and BH

·         Fire safe design - to API 607 and API 6FACE Marking

·         Meets requirements of Pressure Equipment Directive 2014/68/EU,

·         Pneumatic shell test conducted at 1.1 times rated pressure to check shell integrity, when required · Double block and bleed (DBB) feature

·         Valves are designed and tested for automatic cavity relief

·         Anti-blowout stem design

·         Coil springs used for consistent seat loading and lower operating torque

·         Lip seals provided for low temperature services

·         Primary O ring and Secondary graphite (in 3 stage stem, thrust washer is primary)

·         Wide portfolio of Side-entry and Top-entry designs

·         Options: Buried service, Cryogenic

·         Offered with Electric, Pneumatic and Hydraulic Actuators

·         In-house Tests Capabilities 



Advanced Engineering for Reliability

ASME B16.34 Ball Valves are meticulously engineered using premium materials like stainless steel, carbon steel, and alloy steel, ensuring durability in extreme conditions. Their fire-safe design meets API 607 and ISO 10497 certification, while a blow-out proof stem and anti-static device provide enhanced security during operation. These features make them ideal for critical applications requiring both safety and robustness.


Flexible Operation and Applications

With options for lever, gear, or actuator operations, these ball valves deliver flexibility in control across various media, including water, oil, gas, and steam at temperatures from -29C to 425C. Multiple connection types-flanged, butt weld, socket weld, and threaded-enable seamless integration into diverse piping systems, making them suitable for industrial, oil & gas, chemical, and water treatment sectors.

FAQ's of ASME B16.34 Ball Valve:


Q: How does the ASME B16.34 Ball Valve ensure fire safety?

A: The ASME B16.34 Ball Valve is certified to API 607 and ISO 10497 fire-safe standards, which means it maintains operational integrity and minimizes leakage during high-temperature incidents, providing crucial protection in hazardous environments.

Q: What are the available operation types for this ball valve?

A: This ball valve can be operated via lever, gear, or actuator mechanisms, accommodating manual, pneumatic, or electric control based on the specific requirements of your application.

Q: When should I choose a floating or trunnion mounted structure?

A: A floating ball valve is ideal for low-to-medium pressure applications, while a trunnion mounted design is recommended for high pressure environments as it minimizes operating torque and enhances sealing performance.

Q: Where can the ASME B16.34 Ball Valve be installed?

A: These valves are suitable for installation in a wide range of industrial facilities, including oil & gas plants, chemical factories, and water treatment stations, thanks to their compatibility with various connection standards and media types.

Q: What is the process for testing these ball valves?

A: Each valve is rigorously tested in accordance with API 598 and ISO 5208 standards to verify its performance, leakage class, and durability before it is approved for distribution or installation.

Q: How does the anti-static device benefit valve operation?

A: The built-in anti-static device prevents static charge accumulation between the ball and stem, reducing the risk of spark-induced explosions and making the valve safer for flammable or hazardous media applications.

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