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The Effects of Reduced Graphene Oxide Flakes in the Dielectric on Electrical Discharge Machining

机译:电介质中氧化石墨烯薄片的减少对放电加工的影响

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摘要

Electrical discharge machining (EDM) is a nonconventional technology that is frequently used in manufacturing for difficult-to-cut conductive materials. Drawbacks to using EDM include the resulting surface roughness and integrity. One of the recent innovations for improving surface integrity with EDM is the use of a powder mixed dielectric. The aim of this study is to analyze the influence of having reduced graphene oxide (RGO) in the dielectric on the ionization of the plasma channel and the dispersion of electrical discharges. The main goal is to improve the surface integrity of the tool steel 55NiCrMoV7 during finishing machining. To achieve this goal, an experimental investigation was carried out to establish the smallest possible values of discharge current and pulse time at which it is possible to initiate an electric discharge, which causes material removal. Next, the effect of the direction of the electric discharges (electrode polarity) and the concentration (percentage) of RGO in the dielectric on surface integrity was investigated. The results of this experiment indicate that during EDM with RGO, the discharges are dispersed on the RGO flakes. This leads to a multiplication of the discharges during a single pulse, and this strongly affects the surface integrity. The obtained results indicate that it is possible to reduce surface roughness and thickness of the recast layer by approximately 2.5 times compared with conventional EDM.
机译:放电加工(EDM)是一种非常规技术,常用于难以切割的导电材料的制造中。使用EDM的缺点包括产生的表面粗糙度和完整性。利用EDM改善表面完整性的最新创新之一是使用粉末混合电介质。这项研究的目的是分析电介质中氧化石墨烯(RGO)的还原对等离子体通道电离和放电分散的影响。主要目标是在精加工期间改善工具钢55NiCrMoV7的表面完整性。为了实现这个目标,进行了一项实验研究,以建立最小的放电电流和脉冲时间值,在该值下可以开始放电,从而引起材料去除。接下来,研究了电介质中的放电方向(电极极性)和RGO的浓度(百分比)对表面完整性的影响。该实验的结果表明,在用RGO进行EDM加工期间,放电物分散在RGO薄片上。这导致单个脉冲期间的放电倍增,并且强烈影响表面完整性。获得的结果表明,与传统的EDM相比,可以将重铸层的表面粗糙度和厚度降低约2.5倍。

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