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首页> 外文期刊>KSCE journal of civil engineering >Effect of the Realistic Tire Contact Pressure on the Rutting Performance of Asphaltic Concrete Pavements
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Effect of the Realistic Tire Contact Pressure on the Rutting Performance of Asphaltic Concrete Pavements

机译:实际轮胎接触压力对沥青混凝土路面车辙性能的影响

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摘要

The effect of different configurations of normal contact stresses on the rutting performance of asphalt concrete overlays on a soft and stiff Crushed Aggregate Base (CAB) layer is investigated. A three-dimensional (3-D) finite element model of a pavement structure is generated. The effect of different types of simplified normal contact stresses and a realistic 3-D normal stress on the rutting performance is investigated. Since the failure mechanism of asphaltic materials at high temperature is mainly related to the flow of the material, the viscoelastic and viscoplastic constitutive relationships coupled with the hardening-relaxation mechanisms are utilized to represent the behavior of asphalt concrete layer. This constitutive relationship is part of the PANDA (Pavement Analysis using Nonlinear Damage Approach) model developed by the authors and their collaborators. As the result of simulation, the magnitude of the rut depth on the asphalt concrete layer is generally determined to be inversely proportional to the stiffness of the CAB layer, and the rut depth on the asphalt concrete layer under the realistic 3-D normal stress is about 1.5 times greater than the rut depth under uniformly distributed normal stress.
机译:研究了法向接触应力的不同配置对软质和硬质碎石骨料基层(CAB)上的沥青混凝土面层车辙性能的影响。生成路面结构的三维(3-D)有限元模型。研究了不同类型的简化法向接触应力和逼真的3-D法向应力对车辙性能的影响。由于沥青材料在高温下的破坏机理主要与材料的流动有关,因此利用粘弹性和粘塑性本构关系以及硬化松弛机理来代表沥青混凝土层的性能。这种本构关系是作者及其合作者开发的PANDA(使用非线性损伤法进行路面分析)模型的一部分。作为模拟的结果,通常将沥青混凝土层上的车辙深度的大小确定为与CAB层的刚度成反比,并且在真实的3D法向应力下,沥青混凝土层上的车辙深度为在均匀分布的法向应力下约为车辙深度的1.5倍。

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