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NANO-SCALE STRESS: FROM DISCRETE TO CONTINUUM

机译:纳米压力:从离散到连续体

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The present work deals with a stress measure derived from a general atomic force field. Usually, stresses at atomic level are determined through the Clausius virial theorem for a fixed volume containing interacting particles. The present stress is derived on the basis of the first Brillouin zone, or equivalently the Voronoi cell, surrounding the atom. Thus, this is the smallest scale at which the stress measure makes sense. Obviously, the stress is discrete in nature since the Voronoi cells are discrete. In order for the stress to become continuous the finite element formalism is used in terms of interpolation functions from 3D Voronoi elements. The present stress measure is non-local, it is not necessarily symmetric in its indices and incorporates micro-deformations.
机译:本工作涉及从一般原子力场得出的应力测量。通常,原子水平的应力通过Clausius Virial定理确定含有相互作用颗粒的固定体积。本应力基于第一布里渊区来源,或等效地围绕原子围绕voronoi细胞。因此,这是压力测量是最有意义的最小规模。显然,由于Voronoi细胞是离散的,因此压力是分立的。为了使压力变得连续,在3D Voronoi元素的插值函数方面使用有限元形式。本应力测量是非局部的,它在其指标中不一定是对称的,并包含微变形。

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