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International Journal of New Developments in Engineering and Society, 2023, 7(9); doi: 10.25236/IJNDES.2023.070912.

Study on the Rapid Assessment Method of Thin-Walled Cable Service Life Based on Arrhenius Equation

Author(s)

Qingwen Wang, Di Su, Hongzhi Cao, Yantao Song

Corresponding Author:
Qingwen Wang
Affiliation(s)

Quality Assurance Department, CRRC Changchun Railway Vehicles Co., Ltd., Changchun, 130000, China

Abstract

Cable is a crucial material in high-speed EMUs. Predicting and evaluating cable service life is essential to ensure safe vehicle operation and reduce operation and maintenance costs. This paper utilizes the Arrehenius equation method to predict and evaluate the service life of wires and cables for high-speed EMUs. The life assessment model parameters were obtained through accelerated thermal aging experiments. The corresponding life assessment model of the experimental cable was then obtained, verifying the feasibility of the method.

Keywords

high-speed EMU, cable, Arrehenius equation, cable life evaluation

Cite This Paper

Qingwen Wang, Di Su, Hongzhi Cao, Yantao Song. Study on the Rapid Assessment Method of Thin-Walled Cable Service Life Based on Arrhenius Equation. International Journal of New Developments in Engineering and Society (2023) Vol.7, Issue 9: 77-81. https://doi.org/10.25236/IJNDES.2023.070912.

References

[1] Changying Liu, Xiaowen Sun, Zhiyuan Wei, Ming Nan, Yinhan Gao. Study of optimal control for electric automatic side door used in high-speed train. Energy Education Science and Technology Part A: Energy Science and Research. 2014, 32(2):1027-1032

[2] Chen D, Zhang P, Cheng W, Huang MJ. Research on aging life assessment model of power cable insulation. Optical fiber and cable and its application technology. 2015, 5: 37-39

[3] YU Yanlong, LI Sheng, SUN Hui. Test method for aging and residual life assessment of XLPE cable insulation [J]. Grid and Clean Energy, 2011, 27(4):26-29

[4] Lv Jingyong, Wang Xiangjun. Residual life assessment of marine butadiene rubber insulated power cables [J]. Elastomer, 2014, 24(4): 42-47

[5] Zhang Tiyan, Wang Chengmin, Sun Qiuno, Zhang Huaguang. A class of power cable life assessment methods based on improved Weibull distribution model. China Engineering Science. 2008, 10(10): 42-46

[6] WANG Yiyao, HE Jinhong, CHEN Meiyu, et al. Thermal life test of cable insulation for third generation nuclear power plants [J]. Wire and Cable, 2011(6): 31-35

[7] Yaping L I , Luowei Z , Pengju S .Review of Accelerated Aging Methods for IGBT Power Modules[J].Journal of Power Supply, 2016.

[8] Tian Xin. Analysis of thermal aging life standard of wire and cable [J]. Standardization Research, 2014(5): 63-67.