
Design and manufacturing:GB/T 12235, ASME B16.34, IEC 60534
The structural length: GB/T 12221, ASME B16.10
Connection forms:HG/T 20592-20605, GB/T 9112-9124, ASME B16.5
Inspection and test:GB/T 13927, API 598, IEC 60534-4
Caliber:1/2″ ~ 24″ (DN15 ~ DN600)
Pressure temporature level:ASME B16.34, GB/T 12224
Drive mode: Pneumatic Actuated
Pressure:PN1.6 MPa ~ PN40 MPa Class 150 ~ Class 2500
A Pneumatic Control Valve is an essential component in industrial automation, utilizing compressed air to modulate the flow of various media within a system. By adjusting the valve position in response to control signals, it maintains desired process parameters such as flow rate, pressure, and temperature.
Precise Control: Offers accurate modulation of flow rates, ensuring optimal process conditions.
Rapid Response: Pneumatic actuation allows for swift adjustments, enhancing system responsiveness.
Durability: Constructed from robust materials to withstand harsh industrial environments.
Versatility: Compatible with a wide range of media, including gases, liquids, and steam.
Safety: Fail-safe designs ensure appropriate valve positioning during power or air supply failures.
Manufacturing Standard: Conforms to standards such as ANSI/ISA-75.05.01 for control valve sizing and ASME B16.34 for pressure-temperature ratings.
Structural Length Standard: Adheres to ANSI/ISA-75.08.01, ensuring consistent face-to-face dimensions for installation compatibility.
Connection Forms Standards: Meets ASME B16.5 for flanged connections and ASME B16.11 for threaded connections.
Available Sizes (Caliber): Offered in nominal sizes ranging from NPS ½ to NPS 24, catering to various flow requirements.
Pressure-Temperature Rating: Rated according to ASME B16.34, specifying allowable pressure at given temperatures for different materials.
Pressure Range: Operates within a pressure range of 150 to 2500 PSI, suitable for low to high-pressure applications.
Temperature Range: Functional across a temperature spectrum of -50°F to 800°F, accommodating extreme process conditions.
Chemical Processing: Regulates the flow of reactive chemicals to maintain safe and efficient operations.
Oil and Gas: Controls the movement of hydrocarbons in pipelines and refineries.
Water Treatment: Manages the distribution and treatment processes in water supply systems.
Power Generation: Adjusts steam flow in turbines and boilers for efficient energy production.
Pharmaceuticals: Ensures precise flow control in the manufacturing of medical compounds.
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