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Divergence Instability and Diffuse Failure in Granular Media

机译:颗粒介质中的差异不稳定和弥漫性失败

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The question of divergence instability and diffuse failure, which is a common failure mode for granular materials like soils, is tackled here from an experimental, theoretical and numerical perspective. The necessary condition of instability as given by the loss of definite-positiveness of the elasto-plastic matrix (the so-called "second order work criterion") is considered to analyze some experimental tests leading to diffuse failure, the link between kinetic energy and second order work is established, a discrete element method is used to simulate these failure conditions and eventually a 3D bifurcation analysis is performed with incrementally piecewise and non-linear elasto-plastic relationships. Essentially in relation with the non-associate character of the plastic strains of granular materials, a whole bifurcation domain in the stress space emerges from these analyses, leading to novel views of failure for non-associative materials.
机译:来自实验性,理论和数值的视角,在这里解决了弥散性和弥漫性失效的问题,这是土壤的颗粒材料的常见故障模式。由于弹性塑料基质的确定阳性损失(所谓的“二阶工作标准”)所造成的不稳定条件被认为是分析一些实验试验,导致弥漫性失效,动能与动能之间的联系建立了二阶工作,使用离散元件方法来模拟这些故障条件,最终通过逐步分段和非线性弹性塑性关系进行3D分叉分析。基本上关于颗粒材料塑料菌株的非缔合特性,应力空间中的整个分叉结构域出现在这些分析中,导致非联想材料的失败观点。

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