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Dynamic Shakedown Analysis of Flexible Pavements under Rolling and Sliding Contact Considering Moving Speed

机译:考虑到移动速度的滚动和滑动接触下柔性路面动态升起分析

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Pavement subjected to the traffic load above shakedown limit is predicted to exhibit accumulated plastic strains that eventually lead to failure within the pavement system. Shakedown theory is a valid approach to estimating the critical shakedown load level. In this study, a dynamic shakedown method for computing the shakedown limit of pavement is presented based on the lower-bound theorem of shakedown. To this end, a combined Finite element-Infinite element (FE-IE) method is utilized to calculate the dynamic elastic stress field due to rolling and sliding contact between wheel and pavement surface considering the effect of moving speed. The rolling and sliding contact is approximated by a moving Hertz distribution load, which is performed through moving vertical and horizontal body forces simultaneously modeled by thin-layered element above the pavement surface. Shakedown limits for both uniform and two-layered pavement system at various moving speeds have been investigated, respectively. It is found that the shakedown limit decreases with the increasing moving speed and then turns to increase when the moving speed exceeds the Rayleigh wave speed. This dynamic effect is more profound when the horizontal force is small. The influence of horizontal force on shakedown limit at various moving speed is also discussed. Eventually, the impact of frictional coefficient and material properties on shakedown limit for two-layered pavement is also investigated as can then be applied to the optimal pavement design.
机译:预计展示了上面的流量负荷的路面,预计将展示累积的塑性菌株,最终导致路面系统内的故障。 Shakedown理论是估算批判性攀下的负载水平的有效方法。在该研究中,基于Shakedown的下限定理,提出了一种用于计算路面的Shakedlown极限的动态Shakedrown方法。为此,利用组合的有限元 - 无限元素(Fe-IE)方法来计算由于轮盘和路面表面之间的滚动和滑动接触而考虑到移动速度的效果。轧制和滑动触点近似通过移动的赫兹分配负荷,其通过移动垂直和水平体力同时由路面表面上方的薄层元件同时建模。研究了在各种移动速度下的均匀和两层路面系统的Shakedrown限制。发现Shakedrown极限随着移动速度的增加而降低,然后当移动速度超过瑞利波速度时转动增加。当水平力小时,这种动态效果更加深刻。还讨论了水平力对各种移动速度的Shakedrown极限的影响。最终,还研究了摩擦系数和材料特性对两个层面路面的Shakedown极限的影响,然后可以应用于最佳路面设计。

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