Diagnosis of Induced Gear Wear in Two-Stage Helical Gearbox Based on Vibration Analysis

Khaldoon F. Brethee, G. R. Ibrahim, Rashaq A. Mohammed, A. Albarbar
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引用次数: 1

Abstract

Gearbox is an important power transmission component in a wide range of industrial applications. Wear is a common failure mode induced between the contact surfaces of the engaged gear teeth, which result in higher vibration and noise in the gearbox. The early detection of wear is very important for reliable working and better operational performance. Monitoring of gear vibration signature can develop early detection and accurate diagnosis of gear wear fault, and thereby extend the life span of the transmission system. This study focuses on applying an early detection of gear wear that was naturally produced in industrial gearbox system. An experiment gearbox test comprises of back to back two-stage helical gearboxes has been used, where vibration signal was measured and analysed to monitor the health condition of the attached gearboxes under different operation circumstances. Time synchronous averaging (TSA) and wavelet bicoherance (WBC) methods have been used to identify the nonlinearity effect due to induced wear between the contact tooth surfaces. The used methods have the capability to characterize the nonstationary signal and detect the wear at early stages.
基于振动分析的两级螺旋齿轮箱齿轮诱导磨损诊断
齿轮箱是一个重要的动力传动部件,在广泛的工业应用。磨损是啮合齿轮齿的接触面之间引起的一种常见的失效模式,它导致齿轮箱内更高的振动和噪音。磨损的早期检测对其可靠工作和更好的使用性能至关重要。通过对齿轮振动特征的监测,可以早期发现和准确诊断齿轮磨损故障,从而延长传动系统的使用寿命。本研究的重点是应用齿轮磨损的早期检测,是在工业齿轮箱系统中自然产生的。采用由背对背两级斜齿轮箱组成的齿轮箱实验试验,对所附齿轮箱在不同工况下的振动信号进行测量和分析,以监测所附齿轮箱的健康状况。采用时间同步平均(TSA)和小波双相干(WBC)方法识别接触齿间诱导磨损的非线性效应。所采用的方法具有表征非平稳信号和早期检测磨损的能力。
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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