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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Study of an athermal quasi static plastic deformation in a 2D granular material
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Study of an athermal quasi static plastic deformation in a 2D granular material

机译:APS-流体动力学APS分部第70届年会-事件-二维颗粒材料中的非热准静态塑性变形研究

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In crystalline materials, the plasticity has been well understood in terms of dynamics of dislocation, i.e. flow defects in the crystals where the flow defects can be directly visualized under a microscope. In a contrast, the plasticity in amorphous materials, i.e. glass, is still poorly understood due to the disordered nature of the materials. In this talk, I will discuss the recent results we have obtained in our ongoing research of the plasticity of a 2D glass in the athermal quasi static limit where the 2D glass is made of bi-disperse granular disks with very low friction. Starting from a densely packed homogeneous and isotropic initial state, we apply pure shear deformation to the system. For a sufficiently small strain, the response of the system is linear and elastic like; when the strain is large enough, the plasticity of the system gradually develops and eventually the shear bands are fully developed. In this study, we are particularly interested in how to relate the local plastic deformation to the macroscopic response of the system and also in the development of the shear bands.
机译:在晶体材料中,关于位错的动力学,即晶体中的流动缺陷,可以在显微镜下直接观察到流动缺陷,因此已经很好地理解了可塑性。相反,由于无定形材料即玻璃的无序性,其可塑性仍然知之甚少。在本次演讲中,我将讨论我们在无热准静态极限条件下对2D玻璃的可塑性进行的持续研究中获得的最新结果,其中2D玻璃由摩擦系数非常低的双分散颗粒盘制成。从密集的均质且各向同性的初始状态开始,我们将纯剪切变形应用于系统。对于足够小的应变,系统的响应是线性的和弹性的。当应变足够大时,系统的可塑性逐渐发展,最终剪切带充分发展。在这项研究中,我们对如何将局部塑性变形与系统的宏观响应以及剪切带的发展联系起来特别感兴趣。

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