AZ91-Mg 材料与新型钼丝和普通黄铜丝相比的线材放电加工过程中材料去除率的实验研究

Q4 Materials Science
Neduncheziyan Narendran, Paramasivam Thamizhvalavan
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引用次数: 0

摘要

本研究的目的是检验 AZ91-Mg 材料在线切割加工(WEDM)中的材料去除率,并比较新开发的钼丝与普通黄铜丝的性能。实验分为两组,即第一组 AZ91-Mg 材料和普通黄铜线,以及第二组 AZ91-Mg 材料和钼线。每组有 20 件工件。实验设置包括准备工件、设置线切割机床、调整切削参数、测量 MRR(材料去除率)和分析结果。在此过程中,G 功率设定为 80%,每组样本数用公式 α = 0.05 来确定,样本数为 20。本研究通过工件初始重量(克)-工件最终重量(克)来计算 MRR。对所获得的数据(包括 MRR 值、表面粗糙度和尺寸精度)进行比较,以评估线材类型对 MRR 的影响。结果表明,两组之间存在显著的统计学差异,P 值为 0.000(P < 0.05)。在研究的限制条件下,使用钼丝和普通黄铜丝的 AZ91-Mg 材料在相同工艺参数下的 MRR 最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation on Material Removal Rate During Wire Electrical Discharge Machining of AZ91-Mg Materials Compared with Novel Molybdenum Wire and Plain Brass Wire
The purpose of this study is to examine the material removal rate in wire electrical discharge machining (WEDM) of AZ91-Mg material and compare the performance of a newly developed molybdenum wire with that of plain brass wire. Experiment was performed for two groups namely group 1 AZ91-Mg material with plain brass wire l and group 2 AZ91-Mg material with molybdenum wire. There are 20 pieces of work in each group. The experimental setup included preparing the workpiece, setting up the WEDM machine, adjusting cutting parameters, measuring MRR (Material removal rate), and analyzing the results. In this procedure, G-power is set to 80%, sample size is determined using the formula α = 0.05 per set, and a sample size of 20 is determined. In this study, MRR is found through initial weight of workpiece (gm) - final weight of workpiece (gm). The obtained data, including MRR values, surface roughness, and dimensional accuracy, were compared to evaluate the effect of wire type on MRR. These results showed that there was a statistically significant difference between the two groups with the p value is 0.000 (p < 0.05). Within the limitations of the study, MRR of AZ91-Mg material with molybdenum wire and plain brass wire is maximal at the same process parameter.
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来源期刊
NanoWorld Journal
NanoWorld Journal Materials Science-Polymers and Plastics
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