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Stress hot spots in viscoplastic deformation of polycrystals

机译:多晶体粘塑性变形中的应力热点

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The viscoplastic deformation of polycrystals under uniaxial loading is investigated to determine the relationship between hot spots in stress and their location in relation to the microstructure. A 3D full-field formulation based on fast Fourier transforms for the prediction of the viscoplastic deformation of poly-crystals is used with rate-sensitive crystal plasticity. Two measured polycrystalline structures are used to instantiate the simulations, as well as a fully periodic synthetic polycrystal adapted from a simulation of grain growth. Application of (Euclidean) distance maps shows that hot spots in stress tend to occur close to grain boundaries. It is also found that low stress regions lie close to boundaries. The radial distribution function of the hot spots indicates clustering. Despite the lack of texture in the polycrystals, the hot spots are strongly concentrated in 〈1 1 0〉 orientations, which can account for the observed clustering. All three microstructures yield similar results despite significant differences in topology.
机译:研究了单轴载荷下多晶体的粘塑性变形,以确定应力热点与它们相对于微结构的位置之间的关系。基于速率傅立叶变换的3D全场公式用于预测多晶体的粘塑性变形,并具有速率敏感性晶体可塑性。使用两个测得的多晶结构实例化模拟,以及从晶粒生长模拟改编的全周期合成多晶。 (欧几里得)距离图的应用表明应力中的热点趋于发生在靠近晶界处。还发现低应力区域位于边界附近。热点的径向分布函数指示聚类。尽管多晶中缺乏织构,但热点仍集中在<1 1 0>方向上,这可以解释观察到的聚集现象。尽管拓扑结构存在显着差异,但所有这三个微结构均产生相似的结果。

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