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An empirical evaluation and optimization of performance parameters of wire electrical discharge machining in cutting of Inconel 718

机译:inconel 718切割线电气放电加工性能参数的实证评价与优化

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摘要

Wire electrical discharge machining is an alternative vying and innovative non-traditional machining process. This paper focuses on the experimental investigation of wire electrical discharge machining while cutting Inconel 718 material. Pulse on time, pulse off time, cutting voltage, flushing pressure, and wire feed are considered as process parameters; and machining time and surface roughness are taken as performance parameters. In improving the machining productivity and surface characteristic, machining time and surface roughness play a crucial role respectively. Therefore, it is necessary to analyze these response parameters in correlation with the input parameters. The objective of this work is to obtain minimum machining time, minimum surface roughness and to identify significant input parameters which influence these response parameters by statistical modeling. The experimental design has been accomplished by the L27 orthogonal arrays with three different levels of each machining parameters and experiments are performed. The scanning electron microscope has been employed for measuring the kerf of machining. In this research work, evaluation of observed data has been carried out by adopting the Taguchi method, analysis of variance and response surface methodology. It has been found that pulse on time is the most significant parameter which influences both the response parameters. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电线电气放电加工是一种替代的舞蹈和创新的非传统加工过程。本文侧重于导线电气放电加工的实验研究,同时切割了718个材料。脉冲接通时间,脉冲关闭时间,切割电压,冲洗压力和送丝网被认为是工艺参数;和加工时间和表面粗糙度被视为性能参数。在改善加工生产率和表面特性,加工时间和表面粗糙度分别发挥关键作用。因此,有必要分析与输入参数相关的这些响应参数。这项工作的目的是获得最小加工时间,最小表面粗糙度,并通过统计建模来确定影响这些响应参数的重要输入参数。实验设计已经通过L27正交阵列实现,具有三种不同的各种加工参数和实验。扫描电子显微镜已用于测量机械加工的kerf。在本研究工作中,通过采用Taguchi方法,方差分析和响应面方法进行了观察到数据的评估。已经发现,按时脉冲是影响响应参数的最重要参数。 (c)2019年elestvier有限公司保留所有权利。

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