首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Investigation of material removal rate (MRR) and wire wear ratio (WWR) for alloy Ti6Al4 V exposed to heat treatment processing in WEDM and optimization of parameters using Grey relational analysis
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Investigation of material removal rate (MRR) and wire wear ratio (WWR) for alloy Ti6Al4 V exposed to heat treatment processing in WEDM and optimization of parameters using Grey relational analysis

机译:用电火花线切割加工工艺对Ti6Al4 V合金进行热处理的材料去除率(MRR)和线磨损率(WWR)的研究以及参数优化

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摘要

The study examines the changes of the microstructural, mechanical and conductivity characteristics of the titanium alloy Ti6Al4 V as a result of heat treatment using wire electrical discharge machining, and their effect on machinability. By means of optical microscopy and scanning electron microscopy (SEM), analyses have been performed to determine various characteristics and additionally, microhardness and conductivity measurements have been conducted. Material removal rate (MRR) and wire wear ratio (WWR) values have been determined by using L-18 Taguchi test design. The microstructures of the samples have been changed by thermal procedures. Results have been obtained by using the Grey relational analysis (GRA) optimization technique to solve the maximum MRR and minimum WWR values. The best (highest) MRR value is obtained from sample E which was water quenched in dual phase processing. The microstructure of this sample is composed of primary a and alpha' phases. The best (lowest) WWR value is obtained from sample A.
机译:这项研究研究了钛合金Ti6Al4 V的微结构,机械性能和电导率特性的变化,这些变化是通过使用线放电加工进行热处理后得到的,以及它们对切削性能的影响。借助于光学显微镜和扫描电子显微镜(SEM),已经进行了分析以确定各种特性,并且此外,已经进行了显微硬度和电导率测量。材料去除率(MRR)和线材磨损率(WWR)值已使用L-18 Taguchi测试设计确定。样品的微观结构已通过加热程序改变。通过使用灰色关联分析(GRA)优化技术来解决最大MRR和最小WWR值,已获得结果。最佳(最高)MRR值是从样品E中获得的,样品E在双相处理中进行了水淬。该样品的微观结构由初级a和α'相组成。最佳(最低)WWR值是从样本A获得的。

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