Vibration Environment Spectrum Compilation Method of Metro Bogie Frame End

25 Pages Posted: 16 Aug 2023

See all articles by Suqin Wang

Suqin Wang

Southwest Jiaotong University

Pingbo Wu

Southwest Jiaotong University

Ye Song

Southwest Jiaotong University

Chaotao Liu

Southwest Jiaotong University

Yunguang Ye

Southwest Jiaotong University

Fansong Li

Southwest Jiaotong University

Abstract

Vibration fatigue failure of equipment at the bogie frame end occurs from time to time, mainly due to the lack of a suitable vibration environment spectrum during the design stage. The IEC standard spectrum does not match the actual vibration, so the suitable spectrum for bogie frame end under current China’s metro operating conditions is compiled through a large amount of acceleration samples. This paper first determines the frequency range of the spectrum. After normal distribution test, the improved normal tolerance upper limit (NTL) method is then adopted to obtain the upper limit of the acceleration spectral density (ASD) of the samples. Finally, the spectrum is converted to one-third octave band form for fatigue calculation and bench test. The engineering case shows that compared with the IEC standard spectrum the improved NTL method spectrum ensure conservative evaluation results while retaining reasonable safety margins.

Keywords: Bogie frame end, Environmental vibration spectrum, Acceleration spectral density, Normal distribution, Normal tolerance limit method

Suggested Citation

Wang, Suqin and Wu, Pingbo and Song, Ye and Liu, Chaotao and Ye, Yunguang and Li, Fansong, Vibration Environment Spectrum Compilation Method of Metro Bogie Frame End. Available at SSRN: https://ssrn.com/abstract=4543142 or http://dx.doi.org/10.2139/ssrn.4543142

Suqin Wang (Contact Author)

Southwest Jiaotong University ( email )

No. 111, Sec. North 1, Er-Huan Rd.
Chengdu
Chengdu, 610031
China

Pingbo Wu

Southwest Jiaotong University ( email )

No. 111, Sec. North 1, Er-Huan Rd.
Chengdu
Chengdu, 610031
China

Ye Song

Southwest Jiaotong University ( email )

No. 111, Sec. North 1, Er-Huan Rd.
Chengdu
Chengdu, 610031
China

Chaotao Liu

Southwest Jiaotong University ( email )

No. 111, Sec. North 1, Er-Huan Rd.
Chengdu
Chengdu, 610031
China

Yunguang Ye

Southwest Jiaotong University ( email )

Fansong Li

Southwest Jiaotong University ( email )

No. 111, Sec. North 1, Er-Huan Rd.
Chengdu
Chengdu, 610031
China

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