Pneumatic Actuated Ball Valve Manufacturer in USA

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Valvesonly is a trusted Pneumatic Actuated Ball Valve Manufacturer in USA.

Valvesonly is a trusted Pneumatic Actuated Ball Valve Manufacturer in USA. A Pneumatic Actuated Ball Valve is a type of valve that uses compressed air or other gases to automate the opening and closing of a ball within the valve body. This technology is widely used in industrial applications where precise control of fluid flow is essential. The key component of this valve is a spherical-shaped ball with a through hole, which is positioned within the valve body. When the pneumatic actuator is engaged, it either rotates the ball to allow fluid flow or positions it to obstruct the flow, depending on the desired operation.

What is the structure of a Pneumatic Actuated Ball Valve?

The structure of a Pneumatic Actuated Ball Valve consists of three main components: the valve body, the ball, and the pneumatic actuator. The valve body is typically made of materials such as stainless steel, brass, or other corrosion-resistant alloys, providing durability and longevity. The ball, usually made of the same materials as the valve body, features a through hole that aligns with the pipeline when the valve is open. The pneumatic actuator is mounted on top of the valve and is responsible for controlling the ball's position. It converts the energy from compressed air into rotational movement, enabling precise control over the valve's opening and closing.

How does the valve operate?

The operation of a Pneumatic Actuated Ball Valve involves the use of a pneumatic actuator to control the position of the ball within the valve body. When the compressed air is supplied to the actuator, it either opens or closes the valve by rotating the ball. The actuator is equipped with positioners and sensors that provide feedback to ensure accurate control over the valve's position. This automation allows for efficient and reliable regulation of fluid flow, making Pneumatic Actuated Ball Valves suitable for various industrial applications, including oil and gas, chemical processing, water treatment, and many others. The advantages of these valves include fast response times, precise control, and the ability to operate in harsh environments.

•    Valve Body
•    Ball
•    Seats
•    Stem
•    Pneumatic Actuator
•    Positioners and Sensors
•    End Connections

•    Oil and Gas
•    Chemical Processing
•    Water Treatment
•    Petrochemical
•    Power Generation
•    Pulp and Paper
•    Mining
•    Automotive
•    Aerospace
•    Marine
•    Textiles
•    Renewable Energy (e.g., Wind and Solar)
•    General Manufacturing
•    Wastewater Treatment

•    Fast response time
•    Precise control
•    Automation
•    Versatility
•    Durability
•    Reliability
•    Bi-directional control
•    Compact design
•    Cost-effective
•    Suitable for harsh environments

•    Standard -4°F to 200°F (-20°C to 93°C)
•    Low -40°F to 176°F (-40°C to 80°C)
•    High 0°F to 300°F (-18°C to 149°C)

Configuration of a Pneumatic Actuator:
•    4-20 Mamp
•    Pneumatic single acting actuators
•    Pneumatic double acting actuators
•    Pneumatic rotary actuators
•    Pneumatic Scotch and Yoke actuators
•    Pressure: 228 bar

•    Available materials: WCB, WC6, WCC, LCB, LCC, Cast iron, Ductile Iron, SS316, SS304
•    Size: 2" to 80" 
•    Class: 150 to 300
•    Nominal Pressure: PN6 to PN40
•    Operation: Pneumatic Actuated
•    Ends: Flanged, Threaded, Socket and Butt Weld

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