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Investigations into the effect of tool shapes with size factor consideration in sink electrical discharge machining (EDM) process

机译:在考虑水槽放电加工(EDM)过程中考虑尺寸因素对刀具形状的影响的研究

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摘要

In sink electric discharge machining (EDM) process, the tool shape and size along with wear are of great importance because they adversely affect the accuracy of machined features. This paper presents the application of response surface methodology (RSM) for investigating the effect of tool shapes such as triangular, square, rectangular, and circular with size factor consideration along with other process parameters like discharge current, pulse on-time, pulse off-time, and tool area. The RSM-based mathematical models of material removal rate (MRR) and tool wear rate (TWR) have been developed using the data obtained through central composite design. The analysis of variance was applied to verify the lack of fit and adequacy of the developed models. Further, the confirmation tests were performed to ascertain the accuracy of the developed models. The investigations revealed that the best tool shape for higher MRR and lower TWR is circular, followed by triangular, rectangular, and square cross sections. From the parametric analysis, it is also observed that the interaction effect of discharge current and pulse on-time is highly significant on MRR and TWR, whereas the main factors such as pulse off-time and tool area are statistically significant on MRR and TWR.
机译:在水槽放电加工(EDM)过程中,刀具形状和尺寸以及磨损非常重要,因为它们会对加工特征的精度产生不利影响。本文介绍了响应面方法学(RSM)在研究工具形状(如三角形,正方形,矩形和圆形)的影响时的应用,并考虑了尺寸系数以及其他过程参数(如放电电流,脉冲接通时间,脉冲断开-时间和工具区域。基于RSM的材料去除率(MRR)和刀具磨损率(TWR)的数学模型已使用通过中央复合设计获得的数据进行了开发。应用方差分析来验证所开发模型的拟合度和充分性不足。此外,进行了确认测试以确定开发模型的准确性。研究表明,较高的MRR和较低的TWR的最佳工具形状是圆形,然后是三角形,矩形和正方形截面。从参数分析中还可以看出,放电电流和脉冲导通时间的相互作用对MRR和TWR的影响非常显着,而脉冲关闭时间和工具面积等主要因素在MRR和TWR上具有统计学意义。

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