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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Three-dimensional analytical solutions for shakedown of cohesive-frictional materials under moving surface loads
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Three-dimensional analytical solutions for shakedown of cohesive-frictional materials under moving surface loads

机译:移动表面载荷作用下黏性摩擦材料振动的三维解析解

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摘要

This paper develops analytical solutions for shakedown limits of a cohesive-frictional half-space under a three-dimensional moving surface load. Melan's lower-bound shakedown theorem has been adopted as the theoretical basis for deriving shakedown limits. Rigorous lower-bound solutions are obtained for shakedown limits by establishing a self-equilibrated residual stress field that, together with the applied elastic stress fields, lies within the Mohr-Coulomb yield criterion throughout the half-space. By searching through the half-space, this study shows that the most critical location for satisfying the yield condition lies on the central plane. The analytical solutions derived in the paper can be used to benchmark numerical shakedown results, as well as to serve as a theoretical basis for the development of an analytical design method for pavements under moving traffic loads.
机译:本文提出了在三维运动表面载荷作用下内聚摩擦半空间的振动极限的解析解。 Melan的下界减震定理已被用作推导减震极限的理论基础。通过建立一个自我平衡的残余应力场以及所施加的弹性应力场,在整个半空间内均处于Mohr-Coulomb屈服准则之内,从而获得了严格的下限解。通过搜索半空间,该研究表明满足屈服条件的最关键位置位于中心平面上。本文得出的解析解可用于基准数值减摇结果,并为发展交通荷载下人行道的解析设计方法提供理论依据。

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