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A correlation coefficient based vibration indicator for detecting natural pitting progression in spur gears

机译:基于相关系数的振动指示器,可检测正齿轮的自然点蚀进程

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This paper presents a correlation coefficient based parameter for detecting the natural progression of pitting fault in spur gear. The higher amplitudes of the shaft rotational frequency, gear mesh frequency and its harmonics dominates the sidebands appear due to the presence of pitting on the gear tooth surface. Hence, sidebands are filtered out to extract and uncover precise information related to the extent of pitting and the obtained residual vibration signal is used subsequently. The correlation of the gear residual vibration signal in healthy stage is continuously compared with the gear residual vibration signal obtained in the later stage as the time progresses. The parameter that quantifies this correlation is termed as the correlation coefficient of the residual vibration signal (CCR). The defect may have a different level of influence on the vibrations at different positions although the sensors are located close to the bearing location on the gearbox. Based on CCR parameter, a qualitative analysis based on the known health stage change position of the gear and a quantitative analysis based on the metrics such as robustness, trendability and monotonicity is carried out for selecting the best vibration sensor position for gear health monitoring. In contrast to the existing parameters for pitting fault detection and progression such as RMS, peak, crest factor, M6A, FM4, NA4, energy ratio and ALR, the proposed CCR parameter shows a significant variation with an increase in the pitting fault severity level. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于相关系数的参数,用于检测正齿轮点蚀故障的自然进程。轴旋转频率,齿轮啮合频率及其谐波的较高振幅主导了边带,这是由于齿轮齿表面上存在点蚀。因此,滤除边带以提取和发现与点蚀程度有关的精确信息,随后使用获得的残留振动信号。随着时间的流逝,将健康阶段中的齿轮残余振动信号的相关性与随后阶段中获得的齿轮残余振动信号进行连续比较。量化该相关性的参数称为残留振动信号(CCR)的相关系数。尽管传感器位于变速箱上的轴承位置附近,但缺陷可能会对不同位置的振动产生不同程度的影响。基于CCR参数,基于齿轮的已知健康阶段变化位置进行定性分析,并基于鲁棒性,趋势性和单调性等指标进行定量分析,以选择最佳的振动传感器位置进行齿轮健康监测。与点蚀故障检测和进展的现有参数(例如RMS,峰值,波峰因数,M6A,FM4,NA4,能量比和ALR)相反,建议的CCR参数显示出随点蚀故障严重性水平的增加而发生的显着变化。 (C)2019 Elsevier Ltd.保留所有权利。

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