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How many types of motorized valves are there?

Hello everyone, I would like to talk to you about the diversity of motor-driven valves, paying special attention to their types, working principles and application fields. I'll detail the design features, performance advantages, and real-life examples of various valves to reveal their real-world value in industrial, commercial, and residential settings. The main purpose is to provide valuable reference information to experts in related fields and stimulate in-depth discussion and research on this topic.

1. About motor driven valves

Motor-driven valves, as a key component of fluid control automation technology, have been widely used in various fields, including petroleum, chemical industry, water treatment, heating and air conditioning systems, etc. These valves are motor driven to provide precise control of fluid flow, pressure and direction, increasing system efficiency and reliability. I will focus on the types of motor-driven valves and their applications, and use case analysis to reveal their value in actual work, din check valve.

2. Ball valve: compact structure and excellent performance

Principle and structure: The ball valve is named for its unique spherical structure. It controls the flow of fluid by rotating the ball. It has a compact structure and excellent sealing performance, and is especially suitable for high pressure and high temperature environments. The electric ball valve uses a motor as the driving source and drives the ball to rotate through a deceleration mechanism to achieve on-off control of the fluid.

Application fields: Electric ball valves are widely used in petroleum, natural gas, chemical industry, metallurgy and other fields to control various fluid media. Its excellent sealing performance and high pressure resistance make it the first choice for high pressure fluid control systems.

3. Butterfly valve: a lightweight and efficient choice

Principle and structure: The butterfly valve uses a disc-shaped valve plate as the closing member, and controls the on-off of the fluid by rotating the valve plate. Its structure is light and it can open and close quickly. It is especially suitable for large-diameter pipelines and occasions requiring frequent operations. The electric butterfly valve is driven by a motor, and the valve plate is driven to rotate through a deceleration mechanism to achieve on-off control of the fluid, duplex stainless steel check valve.

Application areas: Electric butterfly valves are widely used in water treatment, heating, air conditioning systems and industrial pipelines. Its lightweight structure and efficient performance make it an integral part of fluid control systems.

 

4. Gate valve: long history, stable performance

Principle and structure: Gate valve is one of the earliest forms of valves. It controls the on and off of the fluid through the lifting and lowering of the gate plate. It has a simple structure and stable performance, and is especially suitable for situations where the fluid needs to be completely cut off. The electric gate valve is driven by a motor, and the gate plate is driven up and down through a screw or chain to achieve on-off control of the fluid, forged steel swing check valve.

Application fields: Electric gate valves are widely used in petroleum, chemical industry, papermaking and sewage treatment and other fields. Its excellent cutting performance and stable performance make it an important part of the fluid control system.

gate valve video

 

5. Regulating valve: the key to precise flow control

Principle and structure: The regulating valve adjusts parameters such as fluid flow, pressure, and temperature by changing the opening of the valve. Its structure is diverse and can be customized according to different fluid media and process requirements. The electric regulating valve is driven by a motor and equipped with a position sensor and control system to achieve precise control of fluid parameters.

Application fields: Electric control valves are widely used in petrochemical, steel and metallurgy, electric power and pharmaceutical fields. Its precise adjustment performance and flexible control method make it a core device in the fluid control system, full opening check valve.

Through an in-depth discussion of the types of motor-driven valves, I can better understand the working principles and application fields of various valves. With the advancement of technology and changing application requirements, the requirements for motor-driven valves are also constantly increasing. In the future, I look forward to seeing more innovative valve designs and optimization solutions to improve valve performance and application range. I should also pay attention to the safety and environmental performance of valves and promote them to play a greater role in various fields.

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