Micro-Channel Cutting On Glass in ECDM Process Using Different Electrolytes and Tool Polarity

Md. Niamot Ali, B. Sarkar, B. Doloi, B. Bhattacharyya
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Abstract

Micro-channel cutting on electrically non-conducting materials with electrochemical discharge machining (ECDM) process has drawn an momentous attention in manufacturing field as compared to other existing non-traditional machining processes. In the present research work, an effort has been accomplished to investigate the effects of process parameters namely applied voltage (V), electrolyte concentration (wt%), pulse frequency and duty ratio on different performance features of ECDM viz material removal rate (MRR), overcut (OC) and heat affected zone (HAZ) area during micro-channel cutting on glass. Also, the comparative performance studies during micro-channel cutting have been done by using mixed electrolyte of NaOH & KOH and different tool polarities. Overcut is measured as lower (42.26 µm) when aqueous KOH electrolyte is used and as higher (133.44 µm) for aqueous NaOH electrolyte. HAZ enlarges with enrichment in concentration for both types of electrolyte. It is observed that polarity has a vital role on various machining characteristics. As compared to direct polarity, MRR is found very low (3.2 mg/hr) in reverse polarity of tool. Overcut is found low in KOH electrolyte for both types of tool polarity (i.e. 64.68 µm for direct polarity and 42.27 µm for reverse polarity). The process parameters influence on the surface texture of micro-channels. Micro-crack is noticed for direct polarity of tool.
使用不同电解质和工具极性在 ECDM 工艺中切割玻璃上的微通道
与其他现有的非传统加工工艺相比,采用电化学放电加工(ECDM)工艺在非导电材料上进行微通道切割在制造领域引起了极大的关注。在本研究工作中,我们努力研究了在玻璃微通道切割过程中,工艺参数(即应用电压 (V)、电解液浓度 (wt%)、脉冲频率和占空比)对电化学放电加工不同性能特征(即材料去除率 (MRR)、过切削 (OC) 和热影响区 (HAZ) 面积)的影响。此外,通过使用 NaOH 和 KOH 混合电解液以及不同的工具极性,还对微通道切割过程中的性能进行了比较研究。使用 KOH 水电解液时,过切量较低(42.26 微米),而使用 NaOH 水电解液时,过切量较高(133.44 微米)。两种电解质的 HAZ 都随着浓度的增加而增大。据观察,极性对各种加工特性都有重要影响。与直接极性相比,反极性刀具的 MRR 很低(3.2 mg/hr)。在 KOH 电解液中,两种刀具极性的过切都很低(即直接极性为 64.68 微米,反向极性为 42.27 微米)。工艺参数会影响微通道的表面纹理。直接极性工具会出现微裂纹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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