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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >An experimental investigation and optimization of energy consumption and surface defects in wire cut electric discharge machining
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An experimental investigation and optimization of energy consumption and surface defects in wire cut electric discharge machining

机译:电线切割电气放电加工能耗和表面缺陷的实验研究与优化

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摘要

Optimizing the energy consumption and minimization of surface defects in wire cut electric discharge machining (WEDM) at the experimental design effectively saves energy and improves quality of machining. The present study is aimed to reduce energy consumption and improve machine performance related to kerf width, metal removal rate and surface quality in WEDM of Al-Si metal matrix composite. Current, pulse on time, pulse off time, voltage and wire tension are considered as controllable parameters and optimized using graph theory and utility concept (GTUC) and teaching learning based optimization (TLBO) algorithm considering criteria for the performance characteristics. It is observed that 26% of the additional energy is consumed in GTUC method while 40% less energy is consumed in TLBO method; the kerf width is found to be 8.4% more in GTUC and 2.8% less in TLBO respectively; the MRR is found to be 40.2% and 43.2% less in GTUC and TLBO methods respectively; 72.8% of the excess surface roughness is found in GTUC method while 1.2% less surface roughness is found in TLBO method. Effect of process parameters on the performance characteristics is also analyzed and the current is found to be dominant parameter. At TLBO optimized working condition, surface defects around kerf are found minimum. (C) 2021 Elsevier B.V. All rights reserved.
机译:在实验设计阶段,优化线切割电火花线切割加工(WEDM)的能耗,减少表面缺陷,有效地节约能源,提高加工质量。本研究旨在降低能耗,提高铝硅金属基复合材料电火花线切割加工中切口宽度、金属去除率和表面质量的机械性能。电流、脉冲开启时间、脉冲关闭时间、电压和导线张力被视为可控参数,并使用图论和效用概念(GTUC)以及基于教学的优化(TLBO)算法(考虑性能特征的标准)进行优化。据观察,GTUC方法消耗了26%的额外能量,而TLBO方法消耗了40%的能量;GTUC和TLBO的切口宽度分别增加8.4%和2.8%;GTUC法和TLBO法的MRR分别降低了40.2%和43.2%;GTUC方法中发现72.8%的多余表面粗糙度,而TLBO方法中发现1.2%的多余表面粗糙度。分析了工艺参数对性能的影响,发现电流是主要参数。在TLBO优化的工作条件下,切口周围的表面缺陷最小。(c)2021爱思唯尔B.V.保留所有权利。

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