不锈钢微型棘轮电火花加工过程中平均粗糙度深度和材料侵蚀速度的研究

IF 10.1 2区 工程技术 Q1 ENGINEERING, MECHANICAL Facta Universitatis-Series Mechanical Engineering Pub Date : 2023-08-10 DOI:10.22190/fume221220012c
S. K. Chaubey, K. Gupta, M. Madić
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引用次数: 0

摘要

本文介绍了小型棘轮齿轮的电火花加工研究结果。通过17次试验,研究了三个重要工艺参数火花持续时间“Ton”、火花关闭时间“Toff”和线材张力“WT”对表面质量(即平均粗糙度深度“Rz”)和生产率(即材料侵蚀速度“MES”)的影响。Ton和Toff都被确定为重要参数。此外,线切割参数的优化同时产生了Rz 5.30µm和MES 6.75 mm/min的最佳折衷值,并实现了以下切割模式:Ton 1.5µs, Toff 42.5µs, WT 1500 g。最后,进行了表面质量研究,以评价在电火花加工参数值的最佳组合下加工的微型棘轮齿轮的摩擦学适应性。研究了在最佳参数值下加工棘轮齿轮后侧面形成均匀的浅凹坑,使齿轮的承载面积曲线更光滑,摩擦系数更低。棘轮齿轮的轮廓和侧面也没有发现裂纹,毛刺和污垢。
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AN INVESTIGATION ON MEAN ROUGHNESS DEPTH AND MATERIAL EROSION SPEED DURING MANUFACTURING OF STAINLESS-STEEL MINIATURE RATCHET GEARS BY WIRE-EDM
This paper presents the results of an investigation conducted on wire electric discharge machining (wire-EDM) of miniature ratchet gears. Effects of three important process parameters spark duration, ‘Ton’, spark-off-duration ‘Toff’, and wire tension ‘WT’ on surface quality, i.e., mean roughness depth ‘Rz’ and productivity, i.e., material erosion speed ‘MES’, have been investigated by conducting seventeen experimental trials. Both Ton and Toff have been identified as the significant parameters. Further, an optimization of wire-EDM parameters resulted in simultaneously best compromise values of Rz 5.30 µm and MES 6.75 mm/min and is achieved the following cutting regime: Ton 1.5 µs, Toff 42.5 µs, and WT 1500 g. At the end, surface quality study has been conducted to evaluate the tribological fitness of the miniature ratchet gear machined at optimum combination of wire-EDM parameter values. It was investigated that the generation of uniform and shallow craters on the flank surfaces of ratchet gear machined at optimum values of parameters, imparted smoother bearing area curve and lower coefficient of friction. The profile and flank surface of the ratchet gear also found free from cracks, burrs, and dirt.
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来源期刊
CiteScore
14.40
自引率
2.50%
发文量
12
审稿时长
6 weeks
期刊介绍: Facta Universitatis, Series: Mechanical Engineering (FU Mech Eng) is an open-access, peer-reviewed international journal published by the University of Niš in the Republic of Serbia. It publishes high-quality, refereed papers three times a year, encompassing original theoretical and/or practice-oriented research as well as extended versions of previously published conference papers. The journal's scope covers the entire spectrum of Mechanical Engineering. Papers undergo rigorous peer review to ensure originality, relevance, and readability, maintaining high publication standards while offering a timely, comprehensive, and balanced review process.
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