Paper
20 February 2024 Strength analysis of subway bogie frame based on experiment
Dingxiang Hu, Xin Jin, Chen Yang, Hongyu Wang
Author Affiliations +
Proceedings Volume 13064, Seventh International Conference on Traffic Engineering and Transportation System (ICTETS 2023); 130641J (2024) https://doi.org/10.1117/12.3016113
Event: 7th International Conference on Traffic Engineering and Transportation System (ICTETS 2023), 2023, Dalian, China
Abstract
Subway bogie is a key infrastructure. The frame is an important bearing part of the subway bogie, and its mechanical properties have a wide impact on supporting the car body and ensuring the stable operation of subway vehicles. In order to further improve the fatigue reliability of the bogie frame to provide data support, the article is based on the bogie of a certain subway vehicle, analysis of its frame in the design and manufacture of the strength of the reliability of the bogie frame according to the EN13749 and UIC615-4 standard bogie frame static strength and fatigue strength test. First of all, through the examination of the static strength of the frame in the corresponding load, and then analyze the fatigue strength under a certain number of fatigue cycles. According to the analysis of the test results, the static strength of the frame meets the test requirements, and the fatigue strength is assessed based on the results of the static strength test conducted by simulating the operating conditions, and the stress amplitude at each measurement point is within the envelope of the fatigue limit Goodman diagram of the material, which meets the fatigue strength requirements. After 10 million cycles of loading, no cracks were found in the non-destructive flaw inspection, and the fatigue test of the frame was qualified.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Dingxiang Hu, Xin Jin, Chen Yang, and Hongyu Wang "Strength analysis of subway bogie frame based on experiment", Proc. SPIE 13064, Seventh International Conference on Traffic Engineering and Transportation System (ICTETS 2023), 130641J (20 February 2024); https://doi.org/10.1117/12.3016113
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KEYWORDS
Material fatigue

Design and modelling

Reliability

Deformation

Education and training

Inspection

Magnetism

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