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Effect of Different Electrolytes on Material Removal Rate, Diameter of Hole, and Spark in Electrochemical Discharge Machining

机译:不同电解质对电化学放电加工的材料去除率,孔径和火花的影响

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摘要

Advanced materials like glass, quartz, and composites have high potential for their applications in different fields of engineering due to their favorable properties like hardness, chemical inertness, electrical insulation, low thermal conductivity. The recent analytical and experimental work have opened the avenue of machining nonconductive materials like glass, alumina, etc., using an integrated process of electrochemical discharge machining (ECDM). ECDM is a nonconventional machining process which is an integrated process of electrochemical machining (ECM) and electro discharge machining (EDM). In this paper, ECDM has been investigated for drilling operation in glass. This study reports effect of different electrolytes on material removal rate, entrance and exit diameter of the hole, and sparking difference at the machining junction. Three different electrolytic solutions (NaOH, NaNO_3, and H_2SO_4) have been used for ECDM. The performance of three different electrolyte solutions is compared among themselves based on the process performance based on above parameters. The conditions for the maximum material removal rate, less difference in entrance and exit diameter with better sparking stability have been established from the experimental findings.
机译:如玻璃,石英和复合材料如玻璃,石英和复合材料,在不同的工程领域中具有很高的潜力,这是由于它们的有利性,化学惰性,电绝缘,导热性低。最近的分析和实验工作已经使用电化学放电加工(ECDM)的综合工艺打开了玻璃,氧化铝等的非导电材料等非导电材料的途径。 ECDM是一种非转化加工过程,是电化学加工(ECM)和电卸加工(EDM)的集成过程。在本文中,已经研究了ECDM用于在玻璃中钻孔操作。本研究报告了不同电解质对孔的材料去除率,入口和出口直径的影响,以及加工结的引发差异。用于ECDM的三种不同的电解液(NaOH,NaON_3和H_2SO_4)。基于基于上述参数的过程性能,将三种不同电解质解决方案的性能进行比较。已经从实验结果确定了最大材料去除率,入口和出口直径较小的条件,并且从实验结果中建立了更好的引发稳定性。

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