MARS VALVES AND AUTOMATION

Electric Jacket Ball Valve

SKU:MARSP51

Category: INDUSTRIAL VALVES, Ball Valve


MARS AUTOMATION SUPPLIES AND EXPORTS: Electric Jacketed Ball Valves, engineered to manage viscous and temperature-sensitive media in industries such as petrochemicals, pharmaceuticals, and food processing. These valves feature a double-walled body with a jacket that allows heating or cooling fluids to circulate, maintaining media at the desired temperature to prevent solidification or degradation. Equipped with an electric actuator, these valves provide automated, reliable control for on/off or modulating functions, ideal for remote operations in critical processes. MARS Automation’s jacketed ball valves are built to deliver consistent, precise flow control even in demanding thermal applications.

Part Material of Construction (MOC) Application
Body Carbon Steel or Stainless Steel with Jacketed Casing Designed for temperature-sensitive applications such as oils, syrups, and chemicals that require heating or cooling to prevent solidification.
Seat PTFE, PEEK, or Metal-Seated (based on temperature needs) Provides a tight seal with high resistance to varying temperatures and chemical exposure.
End Flanged Ends (ANSI, DIN, or JIS standards) Ensures secure and stable installation in industrial piping systems, especially under high-temperature conditions.
Operation Electric Actuator (On/Off or Modulating Control) Allows precise, automated control ideal for managing flow in remote or temperature-regulated environments.
Ball Stainless Steel or Carbon Steel Ensures durability under high-pressure and high-temperature conditions.
Pressure Up to 40 Bar (depending on valve size and application) Suitable for high-pressure applications in diverse industries.
Temperature Up to 300°C (depending on jacket fluid and body material) Ideal for high-temperature applications, allowing heating or cooling to maintain media consistency.

Trust MARS Automation for high-quality, temperature-controlled jacketed valve solutions to optimize your critical processing needs.