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Reduction of Overcut in the Electrochemical Discharge Machining Process Using a Side-insulated Electrode

机译:使用侧绝缘电极减少电化学放电加工过程中的过度

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Electrochemical discharge machining (ECDM) process utilizes the spark discharge produced by gas film formation during electrolysis. In conventional ECDM process precise control of the spark generation is difficult because of the randomness of gas film formation which results in the significant deterioration of process qualities such as excessive overcut, poor machining accuracy and low machining repeatability. The undesirable overcut phenomenon strictly hinders the dimensional miniaturization of ECDM process especially when the diameter of applied tool is much smaller than 100 μm. In this study a side insulated tool and dilute electrolyte concentration is proposed to reduce the undesirable overcut and thus, to improve the machining resolution of ECDM process. Experiments are conducted with various machining parameters, such as spark ignition voltage, electrolyte concentration and tool insulation. As a result the feasibility of miniaturization in ECDM process is successfully improved by reducing the excessive overcut phenomena.
机译:电化学放电加工(ECDM)工艺利用电解过程中气体膜形成产生的火花放电。在传统的ECDM过程中,由于气体膜形成的随机性,难以控制火花产生,这导致工艺质量的显着劣化,例如过度的过度,加工精度不佳和低加工可重复性。不希望的过度现象严格阻碍了ECDM工艺的尺寸小型化,特别是当施加工具的直径远小于100μm时。在这项研究中,提出了一种侧绝缘工具和稀电解质浓度以减少不希望的过度,从而改善ECDM工艺的加工分辨率。实验用各种加工参数进行,例如火花点火电压,电解质浓度和工具绝缘。结果,通过减少过度的过度现象,成功改善了ECDM过程中小型化的可行性。

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