Research on a design method of pneumatic logic control system
Autor: | Qun Sun, Wenting Liu |
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Rok vydání: | 2021 |
Předmět: |
0209 industrial biotechnology
Control and Optimization Sequential logic Control engineering systems. Automatic machinery (General) Computer science Applied Mathematics 020208 electrical & electronic engineering Diagram Control engineering 02 engineering and technology 020901 industrial engineering & automation TJ212-225 0202 electrical engineering electronic engineering information engineering T1-995 Control system design Pneumatic circuit Stepper Karnaugh map Instrumentation Logic Control Technology (General) |
Zdroj: | Measurement + Control, Vol 54 (2021) |
ISSN: | 0020-2940 |
DOI: | 10.1177/00202940211020336 |
Popis: | Aiming at the complex characteristics of the sequential logic control system design, such as X-D diagram and karnaugh map method, a design method based on stepper module was proposed, the procedure of which does not need to be checked and corrected. The design of different pneumatic circuits was carried out with the automatic drilling machine as the application object. First, a stepper module composed of a two-position three-way valve and a dual-pressure valve was constructed, and its structure principle was analyzed in detail. Next, three kinds of stroke programs were listed by analyzing the working process of automatic drilling machine, which were multi-cylinder single reciprocating, multi-cylinder multi reciprocating and multi-cylinder multi-section reciprocating stroke program, and the pneumatic circuit control system was designed by the stepper module method. Finally, the pneumatic circuit was simulated and analyzed using the software Fluid-SIM. The simulation results showed that each actuator can complete the corresponding actions according to the design requirements, which verified the correctness and reliability of the stepper module design method. This work would provide a fast and effective method for the design of the sequential logic control system. |
Databáze: | OpenAIRE |
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