레일손상에 의한 윤중증가를 고려한 표면균열 성장예측

Prediction of Surface Crack Growth Considering the Wheel Load Increment Due to Rail Defect

초록

Prediction of a minimum crack size for growth, which is defined as a crack size that grows fast enough to keep ahead of its removal by contact wear and periodic grinding, is the most demanding work to prevent rail from fatigue failure and develop cost effective railway maintenance strategy. In this study, we investigated the wheel load increment due to a rail defect during a train ran over it, and its effect on the minimum crack size for growth. For this purpose,we developed simulation software based on the Fletcher and Kapoor’s “2.5D” model and measured wheel load increment during a train passed over a defect. A maximum contact pressure and contact patch size were calculated by 3D FEM and crack growth analyses were performed by varying two of dominant contact contributors; surface friction coefficient(0.1, 0.2, 0.3and 0.4) and crack aspect ratio. The minimum crack sizes for growth were calculated from 0.29 to 1.44mm depending on the contact conditions. They were decreasing with increasing surface friction coefficient and decreasing with crack aspect ratio(a/b).

키워드

Rail Surface Inclined Crack (레일표면경사균열)Crack Growth (균열성장)Fracture Mechanics (파괴역학)Rolling Contact Fatigue (구름접촉피로)Green’s Function (그린함수)
제목
레일손상에 의한 윤중증가를 고려한 표면균열 성장예측
제목 (타언어)
Prediction of Surface Crack Growth Considering the Wheel Load Increment Due to Rail Defect
저자
전현규최진유나성훈유원희
발행일
2011-09
저널명
한국정밀공학회지
28
9
페이지
1078 ~ 1085