Simulation analysis of ultrasonic inspection of hollow axle with different segments

Qingxiang Zhou, Ye Fu, Guangkai Li, Dong Cai, Cheng Zou, Zhenguo Sun
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Abstract

Hollow axle has replaced the traditional solid axle in high-speed trains due to the increased operational speed. The ultrasonic inspection on hollow axles must be conducted to ensure the safe operation of high-speed trains. The hollow axle can be artificially divided into different segment based on the shape and size of different axle segments including the transition arc section. Different inspection results from these axle segments can be obtained due to the different sound path and the different dimension of the transition arc. Simulation models about different axle segments were established by means of COMSOL Multiphysics. The difference of the simulation results, from different axle segments tested by probes with different angles and directions, are discussed, which may provide guidance for the setup of gate and selection of probes while carrying out actual ultrasonic inspection on hollow axle.
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不同节段空心桥超声检测仿真分析
由于高速列车运行速度的提高,空心桥已经取代了传统的实心桥。为了保证高速列车的安全运行,必须对空心车轴进行超声检测。根据包括过渡弧段在内的不同轴段的形状和尺寸,可以人为地将空心轴分成不同的段。由于声路和过渡弧尺寸的不同,对这些轴段的检测结果也不同。利用COMSOL Multiphysics软件建立了不同车轴段的仿真模型。讨论了不同角度和方向的探头对不同车轴段的仿真结果的差异,为实际对空心车轴进行超声检测时浇口的设置和探头的选择提供指导。
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