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A theory of grain boundaries that accounts automatically for grain misorientation and grain-boundary orientation

机译:晶界理论自动解释晶粒取向错误和晶界取向

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This work is an attempt to answer the question: Is there a physically natural method of characterizing the possible interactions between the slip systems of two grains that meet at a grain boundary—a method that could form the basis for the formulation of grain-boundary conditions? Here we give a positive answer to this question based on the notion of a Burgers vector as described by a tensor field G on the grain boundary [Gurtin, M.E., Needleman, A., 2005. Boundary conditions in small-deformation single-crystal plasticity that account for the Burgers vector. J. Mech. Phys. Solids 53, 1-31]. We show that the magnitude of G can be expressed in terms of two types of moduli: inter-grain moduli that characterize slip-system interactions between the two grains; intra-grain moduli that for each grain characterize interactions between any two slip systems of that grain. We base the theory on microscopic force balances derived using the principle of virtual power, a version of the second law in the form of a free-energy imbalance, and thermodynamically compatible constitutive relations dependent on G and its rate. The resulting microscopic force balances represent flow rules for the grain boundary; and what is most important, these flow rules account automatically—via the intra- and inter-grain moduli—for the relative misorientation of the grains and the orientation of the grain boundary relative to those grains.
机译:这项工作试图回答以下问题:是否存在一种物理上自然的方法来表征两个在晶粒边界处相遇的晶粒的滑移系统之间的可能相互作用-该方法可以为制定晶界条件奠定基础?在这里,我们基于汉堡矢量的概念对此问题给出了肯定的答案,该矢量由晶界上的张量场G来描述[Gurtin,ME,Needleman,A.,2005。小变形单晶可塑性的边界条件就是汉堡向量的原因。 J.机甲物理固体53,1-31]。我们表明,G的大小可以用两种类型的模量来表示:表征两个晶粒之间滑移系统相互作用的晶粒间模量;每个晶粒的晶粒内模量表征了该晶粒的任何两个滑移系统之间的相互作用。我们基于使用虚拟功率原理导出的微观力平衡理论,以自由能不平衡形式表示的第二定律以及依赖于G及其速率的热力学相容本构关系。产生的微观力平衡代表了晶界的流动规律。最重要的是,这些流动规则通过晶粒内和晶粒间模量自动解释了晶粒的相对取向错误和晶粒边界相对于那些晶粒的取向。

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