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Dynamic behavior of asphalt pavement structure under temperature-stress coupled loading

机译:温度-应力耦合荷载下沥青路面结构的动力特性

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摘要

The coupled effect of temperature and stress loading is a critical factor in the evaluation of the structural stability of asphalt pavements. Temperature gradient and external loading are direct causes of pavement structure deformation and failure. A coupling dynamic model for describing such a failure under high temperature and dynamic loading was established. The model was based on the thermoviscoelastic deformation theory of asphalt mixtures. The distribution law of temperature and stress fields on the asphalt surface, as well as the key factors that influence asphalt pavement failure, was simulated and analyzed. The simulation results were consistent with the monitoring results in Guangzhou West 2nd Ring Expressway, which indicates that the model was reliable for the analysis of daily temperature variations of asphalt pavements. Weather conditions considerably affected the monitoring results. Temperature variation directly affected the modulus and further influenced the compressibility and shear strength; however, the vertical stress was slightly affected. The reliability of the model was further verified by comparing the monitoring and simulation results of the asphalt pavement deformation under varying temperatures. These conclusions provide key parameters for asphalt pavement optimization and support for damage control technologies.
机译:温度和应力载荷的耦合作用是评估沥青路面结构稳定性的关键因素。温度梯度和外部载荷是路面结构变形和破坏的直接原因。建立了描述高温和动态载荷下这种故障的耦合动力学模型。该模型基于沥青混合料的热粘弹性变形理论。对沥青路面温度和应力场的分布规律以及影响沥青路面破坏的关键因素进行了仿真分析。仿真结果与广州西二环高速公路的监测结果吻合,表明该模型对于分析沥青路面的日温度变化是可靠的。天气条件极大地影响了监测结果。温度变化直接影响模量,进而影响可压缩性和剪切强度。但是,垂直应力略有影响。通过比较不同温度下沥青路面变形的监测和仿真结果,进一步验证了模型的可靠性。这些结论为沥青路面的优化提供了关键参数,并为破坏控制技术提供了支持。

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