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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Anisotropic stress state and small strain stiffness in granular materials: RC experiments and DEM simulations
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Anisotropic stress state and small strain stiffness in granular materials: RC experiments and DEM simulations

机译:粒状材料的各向异性应力状态和小应变刚度:RC实验和DEM模拟

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摘要

The paper combines experimental and numerical analyses to study the relation between small strain stiffness and micro-structure of an idealized granular material under isotropic and anisotropic stress conditions. Results from the resonant column device on glass ballotini show that the relation between the maximum shear modulus and anisotropic stress components strongly depends on the applied stress path. Discrete element simulations (DEM) are performed to investigate the material behaviour along isotropic compression, triaxial compression and constant K0 deformation. The DEM analysis reveals that each stress path is associated with a characteristic evolution of the coordination number, i.e., the average number of contacts per particle. In turn, the maximum shear modulus is found to be a direct function of the coordination number. In order to include the microstructure interpretation in the analytical description, a modified version of Hardin's relation is proposed as a function of coordination number, void ratio and mean pressure.
机译:本文结合了实验性和数值分析,研究了各向同性和各向异性应力条件下理想化颗粒材料的小应变刚度和微结构之间的关系。玻璃球机的谐振柱装置的结果表明,最大剪切模量和各向异性应力分量之间的关系强烈取决于所施加的应力路径。进行离散元素模拟(DEM)以研究沿着各向同性压缩,三轴压缩和恒定K0变形的材料行为。 DEM分析表明,每个应力路径与协调数的特征演变相关联,即每种粒子的平均触点数。反过来,发现最大剪切模量是协调数的直接功能。为了在分析描述中包括微观结构解释,提出了Hardin的关系的修改版本作为协调数,空隙率和平均压力的函数。

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