Effect of multiple weld repairs on fatigue strength of bogie frame of railroad vehicle

Author:

Seo Jung-Won1ORCID,Hur Hyun-Moo1,Kwon Seok-Jin1,Moon Kyung-Ho1

Affiliation:

1. Korea Railroad Research Institute, Uiwang-si, Gyeonggi-do, South Korea

Abstract

In the welded structure of railroad vehicles, the bogie frame requires a service life more than 25 years, cracks occur in the weld zone owing to the application of repetitive fatigue loading during operation. When cracks occur and propagate in the weld zone, they are removed through gouging, and gas metal arc welding is performed for repair. After the first weld repair, the second weld repair process is performed if crack is visible in the same area. In this study, the effects of repetitive repair welding on the fatigue characteristics were investigated using materials applied in railway vehicle structures. Three types of specimens (weld specimen, first weld repairs specimen, and second weld repairs specimen) were prepared, and fatigue and residual stress tests were performed. The results indicated that the weld specimen had the longest fatigue life, and the first weld repairs specimen had the shortest fatigue life. The fatigue life of the second weld repairs specimen was longer than that of the first weld repairs specimen. Residual stress tests and finite-element analysis results indicated that the first weld repairs specimen had the shortest fatigue life among the specimens tested, because the highest residual stress was generated.

Funder

korea agency for infrastructure technology advancement

ministry of land, infrastructure and transport

Development of Technology for Commercialization of Active Steering Bogie for Electric Railway Vehicle in a Sharp Curve

Publisher

SAGE Publications

Subject

Mechanical Engineering

Reference22 articles.

1. EN 13749 Railway applications-Wheelsets and bogies-Methods of specifying structural requirements of bogie frames. European Committee for Standardization, 2011.

2. UIC Code 615-4 Movie power units bogies and running gear bogie frame structure strength tests. International Union of Railway, 1994.

3. JIS E7105. Test methods for static load of body structures of railways rolling stock. Japanese Industrial Standard, 1994.

4. EN 15085. Railway applications – Welding of railway vehicles and components. European Standard, 2007.

5. UIC Code 897-13. Technical specification for the quality control of welded joints on steel rolling stock. International Union of Railways, 1993.

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