A Comparative Study of Different Materials for Manufacturing of Miniature Spur Gears by Spark Erosion Wire Cutting Process

Q2 Engineering
Sujeet Kumar Chaubey, Kapil Gupta, Neelesh Kumar Jain
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引用次数: 0

Abstract

Selection of suitable materials plays a key role in machining to produce durable and good quality micro parts and components as well as improve the productivity of machining processes. This paper presents the performance evaluation of Spark Erosion Wire Cutting (SEWC) for the manufacturing of miniature gears from different materials, namely stainless steel SS 304, aluminum 7075, copper, and brass. The major objectives of this performance evaluation of SEWC are to determine the effect of gear materials on the quality of the gears, the economic aspects of miniature gears, and the productivity of SEWC for fabricating miniature spur gears. The optimal range of SEWC parameters from past research works was considered for conducting experiments for this study. Four miniature spur gears were fabricated from each gear material. It was concluded from this study that 1) the use of SS 304 as miniature spur gear material results in a better surface finish than aluminum, copper and brass; 2) use of aluminum as miniature gear material is more productive than SS 304, copper and brass; 3) aluminum is more economical and material-efficient than SS 304, copper and brass to fabricate miniature gears by SEWC; 4) material lost in copper is higher as compared to other selected materials; and 5) cost of SS 304 miniature gear is more as compared to other fabricated gears by SEWC.
火花腐蚀线切割加工微型直齿齿轮不同材料的对比研究
选择合适的材料对于生产出耐用、高质量的微型零部件以及提高加工过程的生产率起着关键作用。本文介绍了火花腐蚀线切割(SEWC)在不同材料(不锈钢SS 304、铝7075、铜和黄铜)制造微型齿轮的性能评价。SEWC性能评估的主要目标是确定齿轮材料对齿轮质量的影响,微型齿轮的经济方面,以及SEWC制造微型正齿轮的生产率。考虑了以往研究工作中SEWC参数的最佳范围,进行了本研究的实验。用每种齿轮材料制备了4个微型正齿轮。本研究得出结论:1)使用SS 304作为微型直齿轮材料的表面光洁度优于铝、铜和黄铜;2)使用铝作为微型齿轮材料比SS 304,铜和黄铜更有生产力;3)铝比304不锈钢、铜和黄铜更经济、更节约材料,用于SEWC制造微型齿轮;4)铜中的材料损耗比其他选择的材料要高;5)与SEWC制造的其他齿轮相比,SS 304微型齿轮的成本更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Science and Engineering Progress
Applied Science and Engineering Progress Engineering-Engineering (all)
CiteScore
4.70
自引率
0.00%
发文量
56
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