4.4 Article

Research on Load Characteristics of Axle-Box Bearing Raceway under Wheel-Rail Excitation

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SHOCK AND VIBRATION
卷 2021, 期 -, 页码 -

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HINDAWI LTD
DOI: 10.1155/2021/5871667

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This study focused on the vehicle-track coupling dynamic model considering axle-box bearing, verifying its effectiveness through field tests. Numerical simulations were used to analyze the dynamic performance of the axle-box bearing under different working conditions, highlighting the dominant impact of track irregularity on contact load.
With the increasing speed of high-speed trains, the service conditions of axle-box bearing system worsen, and meanwhile, the dynamic performance of the axle-box bearing directly affects the operational safety. However, the dynamic interactions of the axle-box bearing in the traditional vehicle-track system are often ignored. In this paper, a vehicle-track coupling dynamic model considering axle-box bearing has been built, and the effectiveness of the model is proved by field tests. Dynamic performance of the axle-box bearing has been analyzed and discussed through numerical simulations under different working conditions. Comparing the roller-raceway contact load characteristics under different working conditions, results show that the peak values of roller-outer raceway contact load with wheel-polygonal excitation are basically the same with those without wheel-rail excitation. However, most of the peak values of roller-outer raceway contact force under track irregularity and comprehensive excitation conditions are far greater than those under wheel-polygonal excitation and no wheel-rail excitation conditions, which indicates that the impact of track irregularity on the contact load is dominant.

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