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Typical bearing-fault rating using force measurements: application to real data

机译:使用力测量的典型轴承故障等级:应用于实际数据

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In contrast to the commonly used acceleration measurement, this research discusses the use of force measurements to identify bearing faults. A force sensor is fixed between the rigid surroundings and the bearing to measure all of the reactive forces due to the vibration excitation. Using a force measurement, systematically prepared samples with the five typical faults that can occur during the assembly process (axial, radial, bending moment, contamination and shield defect) were investigated. The samples were prepared with low, medium and high fault ratings. The force measurement, with its relatively simple signal processing based on an envelope detection, was shown to be successful in correctly identifying both the fault rating and the fault type. The presented approach was successfully applied to high-series assembly production and is relatively easy to apply to similar applications.
机译:与常用的加速度测量相反,本研究讨论了使用力测量来识别轴承故障。力传感器固定在刚性环境和轴承之间,以测量由于振动激励而产生的所有反作用力。使用力测量,研究了系统准备的样品,该样品具有在组装过程中可能发生的五个典型故障(轴向,径向,弯矩,污染和屏蔽缺陷)。样品具有低,中和高故障等级。力测量具有基于包络检测的相对简单的信号处理功能,可以成功地正确识别故障等级和故障类型。提出的方法已成功地应用于高级装配生产,相对容易应用于类似的应用。

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