Precision Diagnosis of Electric Multiple Units for Performance Evaluation

Author:

Kim Jeong Guk1,Park Kyung Taek2,Yoon Sung Cheol1,Kwon Sung Tae1

Affiliation:

1. Korea Railroad Research Institute

2. Korea Railrod Research Institute

Abstract

The precision diagnosis of subway electric multiple units (EMUs) was conducted with various types of engineering analysis techniques for the current performance and wear evaluation. The evaluation was conducted on detailed parts of EMUs, such as car bodies, bogies, braking systems, and electrical systems of EMUs. Several characterization means including nondestructive evaluation techniques, corrosion testing, and three-dimensional measurements, were employed for the evaluation of car bodies and bogies. For braking system, degradation and performance tests were conducted, while the functional and degradation tests were performed on electrical system in order to identify the actual performance of the system. Moreover, stress and structural analyses using commercial finite element method (FEM) software provided important information on stress distribution and load transfer mechanisms. In this investigation, various advanced engineering analysis techniques for the safety analysis of subway EMUs have been introduced and the analysis results have been used to provide the critical information for the criteria of safety assessment.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference6 articles.

1. J. Kim, J.D. Chung, J.H. Kim, Y.K. Hong, W.K. Kim, and J.S. Pyun, Failure Analysis of Collided Subway Rolling Stocks for Safety Assessment, MARCON Proceedings (a CD), (2004).

2. J. Kim, J.D. Chung, W.K. Kim, and Y.K. Hong, Deterioration Analysis of a Diesel Shunting Locomotive for Safety Assessment, WCRR Proceedings (a CD), (2006).

3. J.D. Chung, J. Kim, and D.S. Bae, Key Engineering Materials, Vols. 297-300, 2005, pp.1876-1881.

4. The Performance Testing Guideline for EMUs, The Korean MOCT, (2002).

5. ASM Handbook, Nondestructive Evaluation and Quality Control, ASM International, (1992).

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