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Electric Actuated Butterfly Valve

recision Control: Electric actuators provide precise control over the valve position, allowing for accurate flow regulation.
Automatable: They can be easily integrated with computer systems for remote operation and monitoring, enhancing operational efficiency.
Energy Efficient: Electric actuators are generally more energy-efficient compared to pneumatic actuators, especially over longer distances.
Environmentally Friendly: They do not require compressed air, reducing the potential for air leaks and the associated energy loss.
Low Maintenance: Electric actuators are reliable and require minimal maintenance.
Versatile: Suitable for a wide range of applications, including those requiring a high degree of precision or in locations without a ready supply of compressed air.
Safe Operation: Electric actuators can be safer to operate in certain environments, such as those with flammable gases, as they do not have the risk of air leaks.
Consistent Performance: Electric actuators are less affected by temperature variations, providing consistent performance under various environmental conditions.

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Details

An Electric Actuated Butterfly Valve is a butterfly valve that is driven by an electric actuator. The design of the butterfly valve allows it to control flow by rotating a disc on a central axis, which is parallel to the direction of fluid flow when the valve is open and perpendicular when the valve is closed. The electric actuator is responsible for controlling this disc rotation.

 

Performance Characteristics:

High Precision The electric actuator can precisely control the opening and closing of the butterfly valve, enabling accurate flow control.
Automation Capability It can be easily integrated with computer systems for remote operation and monitoring.
Energy Efficiency Compared to pneumatic actuators, electric actuators are generally more energy-efficient, especially over longer distances.
Environmentally Friendly Electric actuators do not require compressed air, reducing the potential for gas leaks and associated energy loss.
Low Maintenance Electric actuators are very reliable and require little maintenance.
Versatility Suitable for a wide range of applications, including those requiring high precision or in places without a compressed air supply.
Safe Operation In environments with flammable gases, electric actuators can be operated more safely as they do not have the risk of gas leaks.
Consistent Performance Electric actuators are not affected by temperature changes and can provide stable performance under various environmental conditions

 

TYPE Electric Actuated Butterfly Valve
Angle 90° 120°180°270°
Angular stroke torque Switch passive contact feedback type / intelligent regulation type
shell Hard aluminum alloy
Power supply DC24v,AC220V,AC380v
Built-in Overheat protection, central control feedback signal
Indicator Perspective window
Protection level IP67
Ambient temperature 80°℃ Max

 

Performance Testing
Our state-of-the-art facilities allow rigorous testing to validate function, endurance and environmental protection.

 

Quality Assurance
100% testing and inspection ensures superior performance of every actuator.

 

Actuator Design
We leverage the latest engineering techniques to build actuators with precision, efficiency and reliability in mind. Our expertise covers electrical, pneumatic models.

 

Selection of pneumatic actuators:
Under normal operating conditions. a safety factor of 20% - 30% is considered for double acting actuators
Example:
Valve torque= 100Nm
Safety torque- 100(1+ 30%) = 130Nm
Air source pressure=5Bar
Compared with the double-acting torque table, the specification of the optional Double-acting actuator is DA105.

 

Installation and Maintenance
The installation and maintenance of a Electric Actuated Butterfly Valve are relatively straightforward. Here are some basic steps:
Installation: During the installation process, it's important to ensure the actuator is correctly aligned and secured in the right position. The actuator should be properly interfaced with the driven device (such as a valve or other mechanical component) to ensure accurate and efficient operation.
Maintenance: Maintenance of the actuator typically involves regular inspections and replacement of worn parts. This might include replacing seals, cleaning and lubricating moving parts, and checking and adjusting the control system. In most cases, just carrying out these maintenance steps periodically can ensure long-term reliable operation of the actuator.
Industry Applications/Functional Uses
Electric Actuated Butterfly Valves have a wide range of uses in many different industries and applications. Here are some of the main application areas:
Manufacturing: On automated production lines, these actuators can be used to control a variety of mechanical equipment such as valves, drums, conveyors, etc.
Energy Sector: In the oil, gas, and electricity industries, these actuators can be used to control various types of valves, ensuring efficient distribution and use of energy.
Chemical Industry: In chemical processes, these actuators can be used to precisely control conditions for various chemical reactions, such as temperature, pressure, and flow rate.
Water Treatment: In water treatment facilities, these actuators can be used to control various equipment like pumps, valves, and filters, ensuring effective water treatment.
Food and Beverage Industry: In the production process of food and beverages, these actuators can be used to control various equipment like mixers, ovens, and packaging machines, ensuring efficiency and quality in the production process.
These are just some of the main application areas for Electric Actuated Butterfly Valves. Thanks to their simple design and operating principle, these actuators can adapt to a variety of different applications and environments.

Actuator Design

We leverage the latest engineering techniques to build actuators with precision, efficiency and reliability in mind. Our expertise covers electrical, pneumatic models.

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