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Outer race defect width measurement in taper roller bearing using discrete wavelet transform of vibration signal

机译:利用振动信号的离散小波变换测量圆锥滚子轴承的外圈缺陷宽度

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摘要

Rolling element bearing is one of the important components in rotary machines. Although a significant quantum of work has been done on bearing defect monitoring, estimation of defect size in bearing elements is still a challenge. In this paper, a technique based on decomposition using Symlet wavelet is proposed for measuring outer race defect width of taper roller bearing. Experiments were carried out on a customized test setup. Seeded defects of different size were introduced separately in the form of an axial groove on the outer race of taper roller bearings using laser engraving technique. It is not only difficult but ambiguous to detect the entry point in the groove defect by making use of the signal. The ambiguity gets reduced by using Symlet5 wavelet due to its linear phase nature which maintains sharpness in the signal even when there is a sudden change in signal. The proposed technique has been successfully implemented for measuring defect width over a range of 0.5776-1.9614 mm. The resulting measure of defect width has been also verified using image analysis. Maximum deviation in result has been found to be 4.06% for the defect width of 1.1820 mm at no load which was found further reduced to 1.02% with increase in load.
机译:滚动轴承是旋转机械中的重要组件之一。尽管在轴承缺陷监控方面已经进行了大量工作,但是估计轴承元件中的缺陷尺寸仍然是一个挑战。提出了一种基于Symlet小波分解的圆锥滚子轴承外圈缺陷宽度测量技术。实验是在定制的测试设置上进行的。使用激光雕刻技术,在圆锥滚子轴承外圈上以轴向凹槽的形式分别引入不同尺寸的种子缺陷。利用信号来检测凹槽缺陷中的进入点不仅困难,而且模棱两可。通过使用Symlet5小波,由于其线性相位特性,即使在信号突然变化的情况下也能保持信号的清晰度,模糊度得以降低。所提出的技术已成功地用于测量0.5776-1.9614 mm范围内的缺陷宽度。缺陷宽度的测量结果也已通过图像分析得到了验证。对于无负载的1.1820 mm的缺陷宽度,结果的最大偏差为4.06%,随着负载的增加,结果进一步减小为1.02%。

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