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首页> 外文期刊>International journal of geomechanics >DEM Investigation on the Evolution of Fabric under True Triaxial Conditions in Granular Materials
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DEM Investigation on the Evolution of Fabric under True Triaxial Conditions in Granular Materials

机译:DEM调查颗粒材料真实三轴条件下织物演化的研究

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摘要

The evolution of fabric under loading plays an important role in the micromechanical analysis of granular materials. This paper addressed this issue from the perspective of the discrete element method (DEM) simulation. A series of drained tests were performed under true triaxial stress conditions. Isotropic assemblies with different densities were sheared to the critical state under three kinds of loading paths. The evolution of three-dimensional fabric under general stress conditions was investigated by analyzing the influences of density, shear mode, and loading path on the fabric anisotropy. Numerical results revealed some evolution patterns of fabric with strain and stress. The evolutions of fabric components and deviatoric fabric were dependent on shear mode. An ultimate fabric anisotropic state was achieved at a relatively large strain for a given shear mode, which agreed with the theoretical expectation of anisotropic critical state theory. Noncoaxialities between fabric, stress, and strain tensors were also observed in simulations and these noncoaxialities needed to be rationally incorporated into fabric evolution laws.
机译:载荷下的织物的演变在粒状材料的微机械分析中起着重要作用。本文从离散元素法(DEM)模拟的角度来看了这个问题。在真正的三轴应力条件下进行一系列排水测试。在三种装载路径下,具有不同密度的各向同性组件被剪切到临界状态。通过分析密度,剪切模式和装载路径对织物各向异性的影响,研究了三维织物在一般应力条件下的进化。数值结果揭示了一些具有应变和应力的织物的演化模式。织物成分和脱极织物的演变取决于剪切模式。对于给定剪切模式的相对大的应变,实现了极限织物各向异性状态,这与各向异性临界状态理论的理论期望同意。在仿真中也观察到织物,应力和应变张力之间的非膨胀性,并且这些非基团需要合理地掺入织物演化法中。

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