Machinability Investigations on Ti-6Al-4V (Grade 5) Wire Electrical Discharge Machining Using Taguchi Method for Auto Parts

Q3 Engineering
Thejasree Pasupuleti, Manikandan Natarajan, Lakshmi Narasimhamu Katta, Lakshmi Narayana Somsole, Jothi Kiruthika, R Silambarasan
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引用次数: 0

Abstract

Titanium alloys are deemed as one amongst the light weight material most preferably adopted in numerous engineering applications due to its exceptional features such as corrosive resistance and thermal strength. These alloys are predominantly used in components of IC engines such as valves and springs, connecting rods. Especially Ti-Grade 5 adopted in aircraft, automobile parts ski plates and bicycles. The preliminary goal of this present research is to optimize the machining variables for Wire Electrical Discharge Machining (WEDM) of Ti-6Al-4V (Grade 5) to accomplish improved rate of material removal and surface finish. Taguchi’s design and analysis method was chosen for devising and examining the experiments by considering input factors (pulse duration and current). An L9 OA was utilized for experimentation to analyze the various output variables, such as surface finish and material removal rate, using the response analysis of Taguchi. ANOVA and interaction analysis also performed to reveal the significance of factors and their interaction effects. The findings of this explorative analysis will helpful for the manufactures to improve the machining performance.
田口法加工汽车零件Ti-6Al-4V(5级)线材的可加工性研究
><div class="section摘要"><div class="htmlview段落">钛合金由于其特殊的特性,如耐腐蚀性和热强度,被认为是众多工程应用中最理想采用的轻质材料之一。这些合金主要用于集成电路发动机的部件,如阀门和弹簧,连杆。特别适用于飞机、汽车零部件、滑雪板、自行车等。本研究的初步目标是优化Ti-6Al-4V(5级)线切割加工(WEDM)的加工变量,以提高材料去除率和表面光洁度。考虑输入因素(脉冲持续时间和电流),采用田口的设计分析方法设计和检验实验。利用L9 OA进行实验,利用田口响应分析法分析各种输出变量,如表面光洁度和材料去除率。方差分析(ANOVA)和交互作用分析(interaction analysis)揭示了各因素及其交互作用的显著性。这一探索性分析的结果将有助于制造商提高加工性能。
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来源期刊
SAE Technical Papers
SAE Technical Papers Engineering-Industrial and Manufacturing Engineering
CiteScore
1.00
自引率
0.00%
发文量
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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