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Two-Piece Cast Structure: The valve body adopts a two-piece cast design, facilitating maintenance and component replacement, thus reducing downtime.
Metal Sealing: Utilizes a metal-to-metal sealing design to ensure sealing performance under high-pressure and high-temperature conditions.
Fire Safety Design: Complies with API 607 standards. Even in case of fire, the valve can maintain sealing performance to prevent medium leakage.
Anti-Static Device: Built-in anti-static device effectively prevents static accumulation, reducing the risk of fire and explosion.
Stem Blowout Prevention Design: The stem is designed with blowout prevention to ensure operational safety.
Compact Design: Small in size and light in weight, facilitating installation and integration into existing systems.
Multiple Connection Methods: Offers various connection methods such as flange connection (RF) and butt-welded connection (BW) to meet different installation needs.
Size Range: 2″ to 48″ (DN50 to DN1200)
Pressure Class: 150LB to 2500LB (PN10 to PN420)
Temperature Range: -29℃ to +425℃
Materials:
Valve Body: ASTM A216 WCB
Bonnet: ASTM A216 WCB
Stem: AISI 4140
Sealing Material: Metal-to-metal (Stainless Steel, Inconel, etc.)
Connection Methods: Flange connection (RF), butt-welded connection (BW)
Operation Modes: Manual, pneumatic, electric
Design Standards: API 6D, ASME B16.34
Testing Standards: API 598, ISO 5208
Face-to-Face Dimensions: Compliant with ASME B16.10 standards
Oil and Gas Industry: Used in exploration, gathering, and processing systems of oil and gas fields to ensure reliable isolation and control of media.
Chemical Industry: Suitable for transportation and reaction systems of various chemical media, preventing medium leakage and ensuring production safety.
Pharmaceutical Industry: Applied in pipeline systems during pharmaceutical production to ensure medium isolation and cleanliness in the drug manufacturing process.
Food and Beverage Industry: Meets food-grade requirements, used in pipeline systems for food and beverage production to ensure hygiene and safety.
HVAC: Used in cooling water systems, hot water systems, etc., to ensure efficient operation of the system.
General Industrial Applications: Suitable for control and isolation of media such as water, oil, and gas.
High Reliability: The two-piece cast structure and metal sealing design ensure stable operation of the valve under high-pressure and high-temperature environments, reducing maintenance frequency and downtime.
High Safety: Fire-resistant and anti-static designs, along with reliable sealing performance, effectively reduce leakage risks and ensure the safety of personnel and equipment.
Easy Installation and Maintenance: The flange connection simplifies the installation process and facilitates maintenance and overhaul.
Wide Application Range: Multiple material options and a broad range of pressure and temperature make it adaptable to various complex working conditions and medium characteristics.
Two-Piece Cast Structure: The valve body adopts a two-piece cast design, facilitating maintenance and component replacement, thus reducing downtime.
Metal Sealing: Utilizes a metal-to-metal sealing design to ensure sealing performance under high-pressure and high-temperature conditions.
Fire Safety Design: Complies with API 607 standards. Even in case of fire, the valve can maintain sealing performance to prevent medium leakage.
Anti-Static Device: Built-in anti-static device effectively prevents static accumulation, reducing the risk of fire and explosion.
Stem Blowout Prevention Design: The stem is designed with blowout prevention to ensure operational safety.
Compact Design: Small in size and light in weight, facilitating installation and integration into existing systems.
Multiple Connection Methods: Offers various connection methods such as flange connection (RF) and butt-welded connection (BW) to meet different installation needs.
Size Range: 2″ to 48″ (DN50 to DN1200)
Pressure Class: 150LB to 2500LB (PN10 to PN420)
Temperature Range: -29℃ to +425℃
Materials:
Valve Body: ASTM A216 WCB
Bonnet: ASTM A216 WCB
Stem: AISI 4140
Sealing Material: Metal-to-metal (Stainless Steel, Inconel, etc.)
Connection Methods: Flange connection (RF), butt-welded connection (BW)
Operation Modes: Manual, pneumatic, electric
Design Standards: API 6D, ASME B16.34
Testing Standards: API 598, ISO 5208
Face-to-Face Dimensions: Compliant with ASME B16.10 standards
Oil and Gas Industry: Used in exploration, gathering, and processing systems of oil and gas fields to ensure reliable isolation and control of media.
Chemical Industry: Suitable for transportation and reaction systems of various chemical media, preventing medium leakage and ensuring production safety.
Pharmaceutical Industry: Applied in pipeline systems during pharmaceutical production to ensure medium isolation and cleanliness in the drug manufacturing process.
Food and Beverage Industry: Meets food-grade requirements, used in pipeline systems for food and beverage production to ensure hygiene and safety.
HVAC: Used in cooling water systems, hot water systems, etc., to ensure efficient operation of the system.
General Industrial Applications: Suitable for control and isolation of media such as water, oil, and gas.
High Reliability: The two-piece cast structure and metal sealing design ensure stable operation of the valve under high-pressure and high-temperature environments, reducing maintenance frequency and downtime.
High Safety: Fire-resistant and anti-static designs, along with reliable sealing performance, effectively reduce leakage risks and ensure the safety of personnel and equipment.
Easy Installation and Maintenance: The flange connection simplifies the installation process and facilitates maintenance and overhaul.
Wide Application Range: Multiple material options and a broad range of pressure and temperature make it adaptable to various complex working conditions and medium characteristics.
LNG Extended Bonnet Cryogenic Globe Valve designed to BS 6364 and ISO 28921 offers reliable sealing, thermal protection, and precise flow control for LNG and cryogenic systems.
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