Machinability Investigations on Wire Electrical Discharge Machining of Inconel 625 by Taguchi Based Grey Approach

Q3 Engineering SAE Technical Papers Pub Date : 2023-11-10 DOI:10.4271/2023-28-0124
Manikandan Natarajan, Thejasree Pasupuleti, Jothi Kiruthika, Gnana Sagaya Raj, PC Krishnamachary, Gowthami Kotapati
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Abstract

Among the challenging materials used in high-temperature applications is Inconel 625. Due to its low thermal coefficient and greater strength, traditional methods tend to produce poor results when it comes to turning Inconel 625. In order to overcome these issues, a new approach has been proposed that utilizes unconventional techniques. WEDM is a variant of the electrical discharge manufacturing process that is commonly used in the production of complex components. It is mainly utilized for the hard to machine parts. A study on the process parameters of WEDM for the machining of Inconel 625 was performed by utilizing the analysis of Taguchi. The study focused on the various parameters of the process, such as peak current, pulse on time, and off time. The performance measures that were considered in this study included surface roughness and material removal rate. The results of the analysis revealed that the various process variables affected the performance indicators. An experimental analysis was also performed to study the effect of the individual parameters on the response parameters.
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基于田口灰色法的线材放电加工Inconel 625的可加工性研究
<div class="section abstract"><div class="htmlview paragraph">高温应用中使用的具有挑战性的材料之一是Inconel 625。由于它的低热系数和更高的强度,传统的方法往往产生较差的结果,当涉及到车削Inconel 625。为了克服这些问题,人们提出了一种利用非常规技术的新方法。电火花线切割加工是电火花制造工艺的一种变体,通常用于复杂部件的生产。主要用于加工难加工的零件。利用田口分析方法对线切割加工铬镍铁合金625的工艺参数进行了研究。重点研究了该工艺的各种参数,如峰值电流、脉冲导通时间和关断时间。在本研究中考虑的性能指标包括表面粗糙度和材料去除率。分析结果表明,各种工艺变量对性能指标有影响。并进行了实验分析,研究了各参数对响应参数的影响。
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SAE Technical Papers
SAE Technical Papers Engineering-Industrial and Manufacturing Engineering
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1487
期刊介绍: SAE Technical Papers are written and peer-reviewed by experts in the automotive, aerospace, and commercial vehicle industries. Browse the more than 102,000 technical papers and journal articles on the latest advances in technical research and applied technical engineering information below.
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