Rolling bearing fault diagnosis techniques - autocorrelation and cepstrum analyses

M. E. Morsy, G. Achtenova
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引用次数: 11

Abstract

The faulty vibration signals generally represent a combination of source and transmission path effects. For example, internal forces in vehicle gearbox which are the source of vibration act on a structure whose properties may be described by a frequency response function between the point of application and the point of measurements. A conventional frequency analysis of a spectrum will have transmission path effects affecting the true source signature and also cannot pinpoint the defects accurately where the problem is associated with more than one sideband and harmonic in case of vehicle gearbox. In the present paper, the transmission path effects are additive and can be separated in autocorrelation and cepstrum analyses, also it gives an accurate detection of periodic structure in a spectrum associated with many harmonics and sidebands as a single component for each family of sidebands without any difficulty in interpreting the sideband structure like in spectrum. The test stand is equipped with two dynamometers; the input dynamometer serves as internal combustion engine, the output dynamometer introduces the load on the flange of output joint shaft. An artificial fault is introduced in vehicle gearbox bearing: an orthogonally placed groove on the inner race with the initial width of 0.6 mm approximately. The results show the effectiveness of proposed analyses in diagnosis and detection of the rolling bearing condition.
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滚动轴承故障诊断技术。自相关和倒谱分析
故障振动信号通常表现为源和传输路径效应的结合。例如,作为振动源的车辆变速箱的内力作用于结构,其特性可以用应用点和测量点之间的频率响应函数来描述。传统的频谱频率分析方法会产生影响真实信号源特征的传输路径效应,而且在车辆变速箱中,当问题与多个边带和谐波相关时,也无法准确定位缺陷。在本文中,传输路径效应是可加性的,可以在自相关和倒谱分析中分离,并且在与许多谐波和边带相关的频谱中,作为每个边带族的单个分量,它可以准确地检测周期性结构,而不会像在频谱中那样难以解释边带结构。试验台配有两台测功机;输入测功机作为内燃机,输出测功机在输出接头轴法兰上引入载荷。介绍了汽车变速箱轴承的一种人为故障:内圈上有一个初始宽度约为0.6 mm的正交槽。结果表明,所提出的分析方法对滚动轴承状态的诊断和检测是有效的。
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