2020
DOI: 10.1016/j.procir.2020.01.200
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Study on the influence of dynamic characteristics of bubbles on electrochemical discharge machining conductive materials

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Cited by 3 publications
(2 citation statements)
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“…The shape of the micro-tool is a critical factor influencing the morphology of the gas film in the ECDM process. The average drilling speed of a sharp-tip tool was approximately 10 times faster than a cylindrical tool due to the higher discharge density at the tip (Zou et al, 2021). Yang et al (2011) found that the curved surface of the spherical tool reduced the contact area on the workpiece, facilitating the flow of electrolytes and enabling the rapid formation of a gas film.…”
Section: Electric Discharge and Electrochemical Energy Couplingmentioning
confidence: 99%
“…The shape of the micro-tool is a critical factor influencing the morphology of the gas film in the ECDM process. The average drilling speed of a sharp-tip tool was approximately 10 times faster than a cylindrical tool due to the higher discharge density at the tip (Zou et al, 2021). Yang et al (2011) found that the curved surface of the spherical tool reduced the contact area on the workpiece, facilitating the flow of electrolytes and enabling the rapid formation of a gas film.…”
Section: Electric Discharge and Electrochemical Energy Couplingmentioning
confidence: 99%
“…It allows the machining of virtually any electrically conductive material with excellent mechanical and physicochemical properties. Both the workpiece and the insulating dielectric fluid vaporize to produce bubbles in EDM, meanwhile, the bubbles and bubble volume fraction in the discharge gap have a significant effect on crater morphology and machining efficiency [1][2][3][4][5]. However, EDM is a transient multiphysics process with a brief and complex formation process, it is challenging to understand the bubble characteristics through experimental methods.…”
Section: Introductionmentioning
confidence: 99%