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Hydraulic-stress coupling effects on dynamic behavior of asphalt pavement structure material

机译:水力耦合对沥青路面结构材料动力特性的影响

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摘要

A hydraulic-stress coupling model was developed for the description of the damage of asphalt pavement. The stress distributions, e.g., horizontal, vertical, and shear stress, of the layered pavement structure were analyzed under moving vehicle loading. The effects of permeability, pavement modulus, and thickness on the pore water pressure within the asphalt pavement were theoretically investigated. The results showed that enhancing the stability of asphalt pavement against shifted pore water pressure has an important function in improving its performance and durability. Moreover, stress distribution is comparatively more centralized than the deeper region, increased pavement thickness helps delay the squeezing compression caused by vehicle loading, and the permeability of the pavement noticeably affects the stability of the saturated asphalt surface.
机译:建立了液压-应力耦合模型来描述沥青路面的损坏。分析了在移动车辆载荷下分层路面结构的应力分布,例如水平,垂直和剪切应力。从理论上研究了渗透率,路面模量和厚度对沥青路面孔隙水压力的影响。结果表明,提高沥青路面的抗孔隙水压力稳定性对提高其性能和耐久性具有重要作用。而且,相比于较深的区域,应力分布相对更集中,增加的路面厚度有助于延迟由车辆载荷引起的挤压压缩,并且路面的渗透性显着影响饱和沥青路面的稳定性。

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