Three-Dimensional Finite Element Analysis of Dynamic Response of the Stress in Pavement Structure under Overload

Author:

Wang Bao Shi1,Liu Jun Qing1,Pang Peng Fei1

Affiliation:

1. Xi’an University of Architecture and Technology

Abstract

In recent years, the phenomenon of vehicle overload in highway transportation is more and more serious. The three-dimensional dynamic FEM was adopted and a three-dimensional simulative model for asphalt pavement with subgrade based on cross-anisotropy under moving load was established by the large-scale finite element analysis software ABAQUS. The response of the stress in the pavement structure was got by using ABAQUS/Standard code. During deceleration, The simulation analysis results under the rated load were compared with those under the different overload ratio. The results show that, under moving load, the surface course of pavement is mainly in three dimension compressive stress state. The horizontal load caused by deceleration has a remarkable effect on the longitudinal stress and the horizontal shearing stress. The stress of the pavement structure under overload is much greater than that caused by the rated load. And the greater the overload ratio, the greater the deviation between them.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference10 articles.

1. Lijun Su etc. The Theory of Asphalt Pavement Structure Behavior. Tongji University Press, Shanghai, China, (2003).

2. Himevo K, Kamijama T Ikeda T , Abe T. Distribution of tire contact pressure of vehicles and its influence on pavement distressure Proceedings, 8th International Conference on Asphalt Pavement. Seattle: The University of Washinton, (1997).

3. Fujian Ni, Xinchun Cheng. Analysis of the effect of overloaded vehicles on asphalt pavement. Journal of Hefei university of technology (natural science) Vol. 25 No. 6 (2002): 1175-1179 (in Chinese).

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5. Seibi A C. Development of constitutive relations for asphalt concrete under high rates of loading Pennsylvania: The Pennsylvania State University, 1993, 100-126.

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