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Diamond Face Grinding of WC-Co Composite with Spark Assistance: Experimental Study and Parameter Optimization

机译:火花辅助下WC-Co复合材料的金刚石磨削:实验研究和参数优化

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摘要

Electro-discharge machining (EDM) characteristics of tungsten carbide-cobalt composite are accompanied by a number of problems such as the presence of resolidified layer, large tool wear rate and thermal cracks Use of combination of conventional grinding and EDM (a new hybrid feature) has potential to overcome these problems. This article presents the face grinding of tungsten carbide-cobalt composite (WC-Co) with electrical spark discharge incorporated within face of wheel and flat surface of cylindrical workpiece. A face grinding setup for electro- discharge diamond grinding (EDDG) process is developed, The effect of input parameters such as wheel speed, current, pulse on-time and duty factor on output parameters such as material removal rate (MRR), wheel wear rate (WWR) and average surface roughness (ASR), are investigated. The present study shows that MRR increases with increase in current and wheel speed while it decreases with increase in pulse on-time for higher pulse on-time (above 100 μs). The most significant factor has been found as wheel speed affecting the robustness of electro- discharge diamond face grinding (EDDFG) process
机译:碳化钨-钴复合材料的放电加工(EDM)特性伴随着许多问题,例如存在再凝固层,较大的刀具磨损率和热裂纹的使用传统磨削和EDM的组合(新的混合功能)有潜力克服这些问题。本文介绍了碳化钨-钴复合材料(WC-Co)的端面磨削,其中在轮毂的端面和圆柱状工件的平面内结合了电火花放电。开发了用于电火花金刚石磨削(EDDG)工艺的端面磨削装置,输入参数(例如砂轮速度,电流,脉冲导通时间和占空比)对输出参数(例如材料去除率(MRR),砂轮磨损)的影响率(WWR)和平均表面粗糙度(ASR)进行了研究。本研究表明,对于较高的脉冲接通时间(大于100μs),MRR随着电流和车轮速度的增加而增加,而随着脉冲接通时间的增加而减小。已发现最重要的因素是砂轮速度会影响电火花金刚石端面磨削(EDDFG)工艺的耐用性

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