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Forced vibration modeling of rail considering shear deformation and moving magnetic load전단변형과 시간변화 이동자기력을 고려한레일의 강제진동모델링

Other Titles
전단변형과 시간변화 이동자기력을 고려한레일의 강제진동모델링
Authors
Kim, J.S.Kim, S.J.Lee, H.Ha, S.K.Lee, Y.-H.
Issue Date
Dec-2013
Publisher
Korean Society of Mechanical Engineers
Keywords
Beam on elastic foundation; Critical velocity; Dynamic response; Euler beam theory; Timoshenko beam theory
Citation
Transactions of the Korean Society of Mechanical Engineers, A, v.37, no.12, pp.1547 - 1557
Indexed
SCOPUS
KCI
Journal Title
Transactions of the Korean Society of Mechanical Engineers, A
Volume
37
Number
12
Start Page
1547
End Page
1557
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/26601
DOI
10.3795/KSME-A.2013.37.12.1547
ISSN
1226-4873
Abstract
A forced vibration model of a rail system was established using the Timoshenko beam theory to determine the dynamic response of a rail under time-varying load considering the damping effect and stiffness of the elastic foundation. By using a Fourier series and a numerical method, the critical velocity and dynamic response of the rail were obtained. The forced vibration model was verified by using FEM and Euler beam theory. The permanent deformation of the rail was predicted based on the forced vibration model. The permanent deformation and wear were observed through the experiment. Parametric studies were then conducted to investigate the effect of five design factors, i.e., rail cross-section shape, rail material density, rail material stiffness, containment stiffness, and damping coefficient between rail and containment, on four performance indices of the rail, i.e., critical velocity, maximum deflection, maximum longitudinal stress, and maximum shear stress. © 2013 The Korean Society of Mechanical Engineers.
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