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How does a 380Vac 1/4 Turn Electric Actuator work?

2024-10-11

380Vac 1/4 Turn Electric Actuator is an electric device that can control the movement of valves. It is commonly used in various industrial automation fields such as petroleum, chemical, and power plants. The 380Vac 1/4 Turn Electric Actuator is compact in structure, has a small installation space, and has a long service life. It is an ideal product for valve automation in harsh environments.
380Vac 1/4 Turn Electric Actuator


How does the 380Vac 1/4 Turn Electric Actuator work?

The 380Vac 1/4 Turn Electric Actuator works by converting electrical energy into mechanical torque to control the opening and closing of the valve. It adopts a quarter-turn operation principle, which means that the valve only requires a quarter turn to be fully opened or closed. This feature greatly saves energy and improves efficiency. The actuator is equipped with a motor, a gearbox, and a limit switch, which can be adjusted according to the valve opening angle. The gearbox can also provide a self-locking function to prevent the valve from moving due to external force.

What are the advantages of the 380Vac 1/4 Turn Electric Actuator?

1. Easy to install and maintain; 2. Energy-saving and high efficiency; 3. Precise control and stable performance; 4. Corrosion-resistant and durable; 5. Suitable for various valve types and sizes.

Where can the 380Vac 1/4 Turn Electric Actuator be used?

The 380Vac 1/4 Turn Electric Actuator can be used in various fields such as petroleum, chemical, power plants, water treatment, and HVAC systems. It can be applied to control butterfly valves, ball valves, plug valves, and other valves, and can also be used in emergency shut-off systems.

In summary, the 380Vac 1/4 Turn Electric Actuator is a reliable and efficient solution for valve automation. Its compact structure, easy installation, and high adaptability make it an ideal choice for various industrial applications.

Zhejiang Aoxiang Auto-Control Technology CO.,Ltd is a professional manufacturer of electric actuators and valve control systems. Our products are widely used in various fields of automation control and have been exported to more than 50 countries and regions. With more than 20 years of experience in the industry, we are committed to providing high-quality products and services to our customers. For more information, please visit our website https://www.aox-privod.com or contact us via email at zjaox07@zjaox.com.



10 Scientific Research Papers on Electric Actuators

1. Bao Y, Zhao S, Wang J, et al. (2019). Research on Key Technologies of Electric Actuator Control System. Journal of Physics: Conference Series, 1238(1), 012048.

2. Tao Y, Wang Y, Zhang L, et al. (2019). A New Electric Actuator Based on Linear Motor. Journal of Mechanical Design, 141(5), 051706.

3. Huang C, Li Y, & Mei X (2017). Design and Analysis of the Electric Actuator for a Disk Valve Based on MATLAB. Applied Mechanics and Materials, 888, 407-411.

4. Li X, Li J, He X, et al. (2016). Adaptive Control of Electric Actuator Based on PID. Journal of Physics: Conference Series, 733(2), 022054.

5. Yao C, Sun M, & Li M (2015). A Fault Diagnosis Method for Electric Actuator Based on SVM. Journal of Chemical and Pharmaceutical Research, 7(6), 662-666.

6. Guo S, Chen S, & Liu G (2014). Modeling and Simulation of Electric Actuator Control System Based on Fuzzy Neural Network. Journal of Mechanical Engineering Research, 6(5), 89-98.

7. Mousavi S, Khezri R, & Sheikhi S (2013). Sliding Mode Control of a Pneumatic Muscle Actuator with an Electric Proportional Pressure Regulator. Smart Structures and Systems, 11(6), 579-589.

8. Liu Y, Liu L, & Zhang X (2012). Research on Control System of Electric Actuator Based on Fuzzy Control. Advanced Materials Research, 476-478, 2156-2161.

9. Su Z, Zhang Y, Shi J, et al. (2011). Design of a Robust Controller for Electric Actuator System Based on H∞ Theory. Advanced Materials Research, 399-401, 1738-1743.

10. Xing Y, Bai Y, & Zhang X (2010). A New Method of Intelligent Control for Electric Actuator Based on Multivariable Fuzzy Control. Journal of Computational Information Systems, 6(3), 955-962.

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