Paper
1 April 2024 Research of micro-holes electrical discharge and electrochemical hybrid machining technology
Qingsong Zhang, Xieeryazidan Aday, Na Kong, Hang Dong, Changke Chen, Pengfei You
Author Affiliations +
Proceedings Volume 13081, Third International Conference on Advanced Manufacturing Technology and Electronic Information (AMTEI 2023); 1308117 (2024) https://doi.org/10.1117/12.3025854
Event: 2023 3rd International Conference on Advanced Manufacturing Technology and Electronic Information (AMTEI 2023), 2023, Tianjin, China
Abstract
High-quality machining of micro-holes has always been one of the challenges in the manufacturing industry, and Electrical Discharge and Electrochemical Hybrid machining (EDM-ECM), a non-traditional machining process for machining difficult-to-cut materials, is prominent in the field of micro-holes manufacturing. This paper investigates the technology and analyses the machining parameters, which are the key factors affecting its performance. The working fluid is at the heart of the proper functioning of hybrid EDM, as its presence makes it possible for EDM and ECM to co-occur. In order to enhance the machining efficiency of EDM-ECM, a triple hybrid machining method based on EDM-ECM is introduced. Finally, the scope of the technique for future research is briefly discussed.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Qingsong Zhang, Xieeryazidan Aday, Na Kong, Hang Dong, Changke Chen, and Pengfei You "Research of micro-holes electrical discharge and electrochemical hybrid machining technology", Proc. SPIE 13081, Third International Conference on Advanced Manufacturing Technology and Electronic Information (AMTEI 2023), 1308117 (1 April 2024); https://doi.org/10.1117/12.3025854
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KEYWORDS
Microfluidics

Electrical conductivity

Vibration

Electrodes

Alloys

Deionized water

Corrosion

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