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A micromechanically-based approach to failure strength for anisotropic geomaterials

机译:基于微机械的失效强度方法对各向异性地造物材料

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The paper aims to propose a macroscopical failure criterion of anisotropic geomaterials based on micromechanical analysis. The study deduces the formulations of overall stress at the microscopical scale. The anisotropy is assumed as the result of the materials fabric, which is described using the second-order density function of particle branch vector. The failure strength is defined in terms of the particle fabric and contact force. The proposed failure criterion implies that the friction strength depends largely on the inclination of major principal stress with respect to the bedding plane, partially on the interparticle friction. The maximum strength is always available when major principal stress is applied in the direction normal to bedding plane. The minimum friction strength tends to appear on the bedding plane.
机译:本文旨在提出基于微机械分析的各向异性地质材料的宏观故障标准。该研究推断了显微尺度的整体应力的制剂。假设各向异性作为材料织物的结果,其使用粒子分支矢量的二阶密度函数描述。故障强度在颗粒织物和接触力方面定义。所提出的故障标准意味着摩擦强度在很大程度上取决于主要主应力相对于床上用品的倾斜度,部分地在颗粒颗粒摩擦上。当主要主应力在正常到床上用品的方向上施加主要主应力时,总是可用的最大强度。最小摩擦强度倾向于出现在床上用品面上。

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