The VSFR9000 Cryogenic Pneumatic Ball Valve represents advanced engineering for extreme temperature applications, specifically designed to operate reliably in environments as cold as -200°C. This wafer-type valve features a full bore design that minimizes pressure drop while maximizing flow capacity, combined with an extended bonnet that protects critical components from cryogenic exposure. The PTFE soft seats ensure Class VI tight shut-off, preventing leakage even under extreme thermal cycling conditions. Available with either single or double acting pneumatic actuators, this valve provides precise control for automated systems handling liquefied gases. Its construction adheres to stringent international standards including ASME B16.34 and PED 97/23/EC, ensuring compatibility with global industrial requirements and safety protocols.
This specialized valve serves critical functions across multiple industries that handle cryogenic fluids. In the energy sector, it's indispensable for LN...
The VSFR9000 Cryogenic Pneumatic Ball Valve represents advanced engineering for extreme temperature applications, specifically designed to operate reliably in environments as cold as -200°C. This wafer-type valve features a full bore design that minimizes pressure drop while maximizing flow capacity, combined with an extended bonnet that protects critical components from cryogenic exposure. The PTFE soft seats ensure Class VI tight shut-off, preventing leakage even under extreme thermal cycling conditions. Available with either single or double acting pneumatic actuators, this valve provides precise control for automated systems handling liquefied gases. Its construction adheres to stringent international standards including ASME B16.34 and PED 97/23/EC, ensuring compatibility with global industrial requirements and safety protocols.
This specialized valve serves critical functions across multiple industries that handle cryogenic fluids. In the energy sector, it's indispensable for LNG terminals where it controls the flow of liquefied natural gas during storage, transfer, and regasification processes. Industrial gas producers rely on it for LOX and LIN systems in air separation plants, where maintaining purity and preventing contamination is paramount. Chemical processing facilities utilize these valves for LPG handling, while manufacturing plants incorporate them into cooling systems and cryogenic storage applications. The valve's ability to maintain sealing integrity and operational reliability at extreme temperatures makes it a preferred choice for engineers designing systems that cannot afford failure in harsh environments.
The business value of the VSFR9000 lies in its proven reliability and reduced lifecycle costs. By preventing leaks and maintaining consistent performance in cryogenic conditions, it minimizes product loss and enhances operational safety. The extended bonnet design reduces maintenance frequency by protecting actuator components from thermal stress, while the full bore construction improves system efficiency by reducing pressure drop. These valves are built to withstand years of continuous service in demanding applications, providing a solid return on investment through reduced downtime and maintenance expenses. Their compliance with international standards ensures they meet regulatory requirements across multiple jurisdictions, simplifying procurement for global operations.
Key Features:
- Full bore design for minimal pressure drop and maximum flow capacity
- Extended bonnet construction to protect actuator from cryogenic temperatures
- PTFE soft seats providing Class VI tight shut-off capability
- Temperature range from -200°C to +121°C for extreme service conditions
- Compliance with ASME B16.34 and PED 97/23/EC international standards
Benefits:
- Reliable performance in extreme cryogenic environments down to -200°C
- Reduced maintenance requirements through protected actuator design
- Enhanced system efficiency with full bore flow characteristics
- International standard compliance for global project compatibility
- Long service life with consistent sealing performance in thermal cycling