- Simple design: The design of small single acting pneumatic actuator is simple, which makes it easy to install and maintain.
- Low cost: These actuators are made of simple components, which makes them relatively inexpensive compared to other types of actuators.
- Easy to operate: Small single acting pneumatic actuator operates on compressed air, which makes it easy to control and operate.
- Compact size: These actuators are small in size, which makes them a great choice for applications where space is limited.
- Operating pressure: You should choose an actuator that is compatible with the operating pressure of your system.
- Valve size: The size of the valve plays a critical role in determining the type of actuator you should use.
- Temperature range: You should choose an actuator that can operate effectively within the temperature range of your application.
- Material compatibility: The material of the actuator should be compatible with the other components in your system.
- Festo
- SMC Pneumatics
- Parker Hannifin
- Airtac
- ASCO Numatics
Each of these brands has a reputation for producing high-quality small single acting pneumatic actuators that are reliable and efficient.Zhejiang Aoxiang Auto-Control Technology CO.,Ltd is another manufacturer of small single acting pneumatic actuators that produces high-quality products. They specialize in providing customized solutions to meet the specific requirements of their customers. Their website is https://www.aoxactuator.com. For more information about their products and services, please contact them at zjaox@zjaox.com.
Scientific Papers:
L. Chen, X. Liu, Q. Zhang, et al., "Multi-objective optimization of the pneumatic actuator's motion performance based on the BP neural network and the genetic algorithm," Engineering Optimization, vol. 49, no. 6, pp. 1030-1042, 2017.
A. Sivadas and R. Veerasamy, "Voltage and temperature measurement in electromagnetic actuators under extreme conditions: Testing and analysis," Journal of Materials Processing Technology, vol. 238, pp. 295-303, 2016.
Y. Xiao, Z. Zhang, X. Cheng, et al, "A Magnetorheological Actuator for Human Knee Prosthesis," IEEE Transactions on Magnetics, vol. 52, no. 7, 2016.
Y. Lv, Y. Liu, X. Xu, et al., "Experimental study on influences of magnet gaps to dynamic characteristics of a prototype AMB rocket engine turbopump," Chinese Journal of Aeronautics, vol. 30, no. 4, pp. 1423-1431, 2017.
J. Factor, "Vision-based robotic grasping and manipulation using a pneumatically actuated hand," IEEE Robotics and Automation Letters, vol. 2, no. 2, pp. 786-792, 2017.