Experimental investigation for fault diagnosis of a single stage worm gearbox using response surface methodology

Q4 Engineering
R. R. Barshikar, P. R. Baviskar
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引用次数: 0

Abstract

Gearbox transmission system is a fundamental factor in the industrial applications. If gearbox stop working due to different faults, it may break normal machine operation and cause a production loss. This research paper focused on fault analysis of combination of worm wheel and bearing by using root mean square (RMS) and response surface method (RSM). Faults considered on outer race and inner race of worm wheel bearing, on worm wheel tooth. These faults and load were considered as an important independent factor to understand their effects on RMS response of worm gearbox. Worm gearbox experimental setup is for laboratory experimentation and RSM for analysis. Twenty-seven experimental trial conducted for three level of parameters based on design of experiment (DOE). Vibration based response measured in frequency domain and root mean square parameter extracted for the fault analysis. Box behnken design RSM is implemented to investigate independent parameters effect on output parameter i.e. RMS. The result shows that effect of faulty inner race bearing is more on worm wheel as compared to faulty outer race bearing and fault parameter influence RMS than load parameter.
基于响应面法的单级蜗杆齿轮箱故障诊断实验研究
齿轮箱传动系统是工业应用中的一个基本因素。如果变速箱因各种故障而停止工作,可能会破坏机器的正常运行,造成生产损失。采用响应面法和均方根法对蜗轮与轴承组合故障进行了分析。考虑蜗轮轴承外圈、内圈、蜗轮齿的故障。将这些故障和载荷作为一个重要的独立因素来理解它们对蜗杆齿轮箱均方根响应的影响。蜗杆齿轮箱实验装置用于实验室实验,RSM用于分析。基于试验设计(DOE),对三个参数水平进行了27次试验。基于振动的频域响应测量和故障分析的均方根参数提取。采用Box - henken设计RSM来研究独立参数对输出参数即RMS的影响。结果表明:内滚道轴承故障对蜗轮的影响大于外滚道轴承故障,故障参数对均方根的影响大于载荷参数。
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
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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