Numerical simulation of railway track supporting system using finite-infinite and thin layer elements under impulsive loads
Abstract
The present study deals with two dimensional, numerical simulation of railway track supporting system subjected to dynamic excitation force. Under plane strain condition, the coupled finite-infinite elements to represent the near and far field stress distribution and thin layer interface element was employed to model the interfacial behavior between sleepers and ballast. To account for the relative debonding, slipping and crushing that could take place in the contact area between the sleepers and ballast, modified Mohr-Coulomb criterion was adopted. Furthermore an attempt has been made to consider the elasto-plastic material non-linearity of the railway track supporting media by employing different constitutive models to represent steel, concrete and supporting materials. Based on the proposed physical and constitutive modeling a code has been developed for dynamic loads. The applicability of the developed F.E code has been demonstrated by analyzing a real railway supporting structure.
Reikšminiai žodžiai: tampriai plastinė medžiaga, dinaminė apkrova, baigtiniai begaliniai elementai, sąsajos elementų modeliavimas, geležinkelio bėgiai, bėgių kelio atramos.
Keyword : elasto-plastic, dynamic loading, finite-infinite elements, interface elements modeling, railway, track supporting media
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