ASTM A351 CF3M Control Valve, IEC 60534, Pneumatic, DN40, RF

ASTM A351 CF3M Control Valve, IEC 60534, Pneumatic, DN40, RF

Key Specifications / Features

The ASTM A351 CF3M Control Valve is a high-performance valve designed for precise flow control in industrial applications. Made from stainless steel (CF3M) for superior corrosion resistance, it features a DN40, 1-1/2 inch size with a PN16 pressure rating. The valve meets IEC 60534 standards, ensuring reliability and safety, and is built with ANSI B16.104 Class IV leakage for tight sealing. It comes with RF flanged ends, making it suitable for a wide range of systems requiring durable and efficient fluid regulation.

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Detail Information

Product Name: ASTM A351 CF3M Control Valve
Design Standard: IEC 60534
Body Material: ASTM A351 CF3M
Size: DN40, 1-1/2 Inch
Pressure Rating: PN16, Class 150 LB
End Connection: RF Flanged
Operation: Pneumatic Actuator
Temperature Range: -60°C to 450°C
Flow Characteristics: Equal Percentage, Linear
Flange Standard: ANSI/ASME B16.5, EN 1092-1
Leakage Standard: ANSI B16.104 Class IV
Face to Face Standard: MFD

Key Features

Lightweight and Compact Design: Small in size and light in weight, making installation and maintenance more convenient, especially in space-constrained environments.
High Regulating Accuracy: Designed for precise control, ensuring efficient and stable regulation in a wide range of industrial applications.
Versatile Application: Ideal for general-purpose process control systems across a broad range of fluid media and technical conditions.
Wide Range of Options: Includes pneumatic single-seat, sleeve-type, and double-seat control valves, providing flexibility to suit different control needs.
Optimized Flow Performance: Features low pressure loss, large flow capacity, and a broad control range for improved operational efficiency.
Strong Output and Reliable Build: Built with a compact yet powerful design that ensures high output force and easy maintenance access.
Excellent for Challenging Media: Especially suitable for systems with low pressure differentials, strict leakage control, or media containing thick or fibrous substances.

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