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首页> 外文期刊>Journal of Micromechanics and Microengineering >Modeling gas film formation in electrochemical discharge machining processes using a side-insulated electrode
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Modeling gas film formation in electrochemical discharge machining processes using a side-insulated electrode

机译:使用侧面绝缘电极在电化学放电加工过程中模拟气膜形成

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摘要

Electrochemical discharge machining (ECDM) is an effective spark-based machining method for nonconductive materials such as glass. The spark generation in ECDM processes is closely related to the electrode effects phenomenon, which has been explained as an immediate breakdown of electrolysis due to the gas film formation at the electrode surface. The initiation of the electrode effects is mainly influenced by the critical current density, which is dependent on several parameters such as the wettability of the gas bubble, surface conditions of the electrode and hydrodynamic characteristics of the bubbles. In ECDM processes, precise control of the spark generation is difficult due to the random formation of the dielectric gas film. In this study, a partially side-insulated electrode that maintained a constant contact surface area with the electrolyte was used for the ECDM process to ensure that a uniform gas film was formed. Visual inspections indicated that the side-insulated tool provides new possibilities for describing the exact geometry of a gas film by inducing single bubble formations. Experiment results demonstrated that ECDM with a side-insulated electrode immersed in the electrolyte generated more stable spark discharges compared to non-insulated electrodes. Microchannels were fabricated to investigate the effects of the side insulation on the geometric accuracy and the surface integrity of the machined part.
机译:电化学放电加工(ECDM)是一种有效的基于火花的加工方法,适用于玻璃等非导电材料。 ECDM工艺中产生的火花与电极效应现象密切相关,这已被解释为由于电极表面形成气膜而导致的电解立即击穿。电极效应的产生主要受到临界电流密度的影响,该电流密度取决于几个参数,例如气泡的润湿性,电极的表面条件和气泡的流体动力学特性。在ECDM工艺中,由于电介质气膜的随机形成,很难精确控制火花的产生。在这项研究中,将与电解质保持恒定接触表面积的部分侧绝缘电极用于ECDM工艺,以确保形成均匀的气膜。目视检查表明,侧面绝缘工具通过诱导单个气泡形成,为描述气膜的确切几何形状提供了新的可能性。实验结果表明,与非绝缘电极相比,将侧面绝缘电极浸入电解质中的ECDM产生了更稳定的火花放电。制造微通道以研究侧面绝缘层对加工零件的几何精度和表面完整性的影响。

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