Electrical bearing failures in electric vehicles
Электрические повреждения подшипников в электромобилях
2020-01-23
SCID: 54.1/48ucmg7h
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bearing currentselectric vehicleselectrical bearing failureslubrication failuresshaft voltages
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Abstract (AI)
Abstract In modern electric equipment, especially electric vehicles, inverter control systems can lead to complex shaft voltages and bearing currents. Within an electric motor, many parts have electrical failure problems, and among which bearings are the most sensitive and vulnerable components. In recent years, electrical failures in bearing have been frequently reported in electric vehicles, and the electrical failure of bearings has become a key issue that restricts the lifetime of all-electric motor-based power systems in a broader sense. The purpose of this review is to provide a comprehensive overview of the bearing premature failure in the mechanical systems exposed in an electrical environment represented by electric vehicles. The electrical environments in which bearing works including the different components and the origins of the shaft voltages and bearing currents, as well as the typical modes of electrical bearing failure including various topographical damages and lubrication failures, have been discussed. The fundamental influence mechanisms of voltage/current on the friction/lubrication properties have been summarized and analyzed, and corresponding countermeasures have been proposed. Finally, a brief introduction to the key technical flaws in the current researches will be made and the future outlook of frontier directions will be discussed.
Key Findings
1
Bearings are identified as particularly vulnerable motor components, with electrical damage becoming a major constraint on electric powertrain service life.
2
Inverter-controlled electric vehicles generate complex shaft voltages and bearing currents that can cause premature electrical bearing failure.
3
The review categorizes electrical bearing failures, including topographical damage and lubrication failures, within representative electric-vehicle operating environments.
4
The review identifies technical shortcomings in existing research and outlines future directions for studying electrical bearing failures.
5
Voltage and current fundamentally alter friction and lubrication behavior, motivating corresponding mitigation countermeasures.
Research Object
Bearings in electric-vehicle electric motor mechanical systems exposed to electrical environments
Research Subject
Electrical premature-failure mechanisms, damage modes, lubrication effects, and mitigation of bearings under shaft voltages and bearing currents
Publication Details
Publication Date
2020-01-23
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