Effect of Track Resistance on Linear Thermal Buckling Characteristics of CWR

도상이 장대 레일의 선형 온도 좌굴에 미치는 영향

  • 강영종 (고려대학교 토목환경공학과) ;
  • 임남형 (고려대학교 토목환경공학) ;
  • 신정렬 (고려대학교 토목환경공학) ;
  • 양재성 (한국철도기술연구원 시설연구부)
  • Published : 1998.05.01

Abstract

For many decades, the railway was constructed using tracks with jointed rails of relatively short lengths in accordance with rolling and handling technology. The joints cause many drawbacks in the track and lead to significant maintenance cost. So, railroad engineers became interested in eliminating joints to increase service loads and speeds by improving rolling, welding, and fastening technology, Continuous welded rail(CWR) track has many advantages over the conventional jointed-rail track. But in the case of the elimination of rail joints, it may cause the track to be suddenly buckled laterally by thermal and vehicle loads. Thermal loads are caused by an increase in the temperature of railway track. In this paper, CWR track model and CWRB program are developed for linear buckling analysis using finite element method(FEM). The finite element discretization is used with a total of 14 degrees of freedom for each rail element. The stiffness of the fastener, tie, and ballast bed are included by a set of spring elements. The investigation on the buckling modes and temperature of CWR track is presented in the paper.

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