Investigation of interlayer shear failure of concrete bridge deck asphalt overlay utilizing shear strength envelopes

被引:5
|
作者
Jia X. [1 ]
Hu W. [2 ]
Zhu D. [3 ]
机构
[1] Tennessee Department of Transportation, 505 Deaderick Street, Suite 400 James K Polk Building, Nashville, 37243, TN
[2] Department of Civil and Environmental Engineering, University of Tennessee, 851 Neyland Drive, Rm 433 John D. Tickle Engineering Building, Knoxville, 37996, TN
[3] Tennessee Department of Transportation, 505 Deaderick Street, Suite 1800 James K Polk Building, Nashville, 37243, TN
来源
关键词
Asphalt overlay; Concrete bridge; Finite element analysis; Shear failure; Shear strength envelopes;
D O I
10.1016/j.engfailanal.2021.105278
中图分类号
学科分类号
摘要
The failure of interlayer between concrete bridge deck and asphalt overlay caused crescent-shaped cracks in the wearing course, resulting in intrusion of moisture into bridge structures and significant decrease in level of service for asphalt wearing course. It is of importance to establish design procedure to select and evaluate the interlayer materials for use in asphalt pavement on concrete bridges. This paper aimed to investigate the shear failure potentials on concrete bridge asphalt overlay using Finite Element (FE) model. The investigation was conducted on a project where a premature shear failure of asphalt pavement on a concrete bridge occurred. Both global and local FE models were established to obtain responses of interlayer under traffic loads. Sensitive analysis was conducted to identify the influence of overlay thickness and modulus on shear failure potentials. The spatial distributions of shear stress and normal stress at interface between concrete deck and asphalt overlay with and without horizontal shear forces were identified. The shear strength envelopes for interlayer were then utilized to evaluate the potential shear failure at interface. Results indicated the increase of overlay thickness may reduce the potential shear failure at interface. The presence of horizontal shear forces on pavement surface significantly increased shear failure at interface. The normal stress influenced the shear strength and needed to be considered in the lab shear test for design of interlayer system. A procedure which associated the load responses at interface with shear strength envelopes was presented. It may be used for evaluating potential interlayer shear failure as well as optimizing interlayer design. © 2021 Elsevier Ltd
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