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Endurance test-rig for diagnostics and prognostics of rolling element bearings

机译:用于滚动轴承的诊断和预测的耐久性试验台

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摘要

Detection of faults in roller element bearing is a topic widely discussed in the scientific field. Bearings diagnostics is usually performed by analyzing experimental signals, almost always vibration signals, measured during operation. A number of signal processing techniques have been proposed and applied to measured vibrations. The diagnostic effectiveness of the techniques depends on their capacities and on the environmental conditions (i.e. environmental noise). The current trend, especially from an industrial point of view, is to couple the prognostics to the diagnostics. The realization of a prognostic procedure require the definition of parameters able to describe the bearing condition during its operation. Monitoring the values of these parameters during time allows to define their trends depending on the progress of the wear. In this way, a relation between the variation of the selected parameters and the wear progress, useful for diagnostics and prognostics of bearings in real industrial applications, can be established. In this paper, a laboratory test-rig designed to perform endurance tests on roller element bearing is presented. Since the test-rig has operated for a short time, only some preliminary available results are discussed.
机译:滚动轴承的故障检测是科学领域中广泛讨论的话题。轴承诊断通常是通过分析实验信号(几乎总是振动信号)来进行的,这些信号是在运行过程中测量的。已经提出了许多信号处理技术,并将其应用于测量的振动。这些技术的诊断效力取决于其能力和环境条件(即环境噪声)。当前的趋势,尤其是从工业角度来看,是将预后与诊断结合起来。要实现预后程序,需要定义能够描述轴承运行状况的参数。在一段时间内监视这些参数的值可以根据磨损进度定义其趋势。以此方式,可以建立所选参数的变化与磨损进程之间的关系,该关系对于实际工业应用中的轴承的诊断和预测是有用的。本文介绍了一种旨在对滚子轴承进行耐久性测试的实验室试验台。由于试验台运行时间很短,因此仅讨论了一些初步的可用结果。

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