Monitoring of journal bearing faults based on motor current signature analysis for induction motors

Junyeong Jung, Yonghyun Park, Sang Bin Lee, Changhee Cho, Kwonhee Kim, E. Wiedenbrug, M. Teska
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引用次数: 9

Abstract

Most of the failures in oil-lubricated journal bearings are associated with mechanical instabilities produced by lubrication system problems or bearing wear, and result in increased shaft vibration. Therefore, monitoring of the journal bearing condition in the field mainly relies on analysis of proximity probe or accelerometer signals. However, not all motors with journal bearings are equipped with such mechanical sensors due to cost or environmental restrictions. In this paper, the feasibility of applying motor current signature analysis (MCSA) for remote monitoring of mechanical instabilities in journal bearings produced by oil whirl and bearing clearance problems, is evaluated. In addition, a small-scale journal bearing test setup that can be implemented in low voltage motors for testing journal bearing faults under controlled conditions, is presented. An experimental study on a sealless fuel pump motor operating in the field, and on the custom-built journal bearing motor test setup shows that MCSA is capable of providing remote monitoring of journal bearing oil whirl and increased clearance for potentially preventing motor failure. The results of vibration analysis are also presented for comparative evaluation.
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基于电机电流特征分析的异步电机轴颈轴承故障监测
油润滑滑动轴承的故障大多与润滑系统问题或轴承磨损引起的机械不稳定有关,并导致轴振动增加。因此,在现场对轴颈轴承状态的监测主要依赖于对接近探头或加速度计信号的分析。然而,由于成本或环境限制,并非所有带有轴向轴承的电机都配备了这种机械传感器。本文评估了应用电机电流特征分析(MCSA)远程监测油旋和轴承间隙问题引起的滑动轴承机械不稳定性的可行性。此外,还提出了一种小型轴颈轴承测试装置,可用于在受控条件下测试低压电机的轴颈轴承故障。在现场运行的无密封燃油泵电机和定制的轴颈轴承电机测试装置上进行的实验研究表明,MCSA能够远程监测轴颈轴承油的旋转和增加间隙,从而潜在地防止电机故障。并给出了振动分析的结果,以供比较评价。
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