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On the origin of microstructure self-similarity in severe plastic deformation

机译:严重塑性变形中微观结构自相似的起源

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In a series of papers by Hughes, Hansen and their coauthors it was established that laminar microstructures developed in compression and rolling possess a surprising property: probability distribution of misorientations referred to the average misorientation is universal, i.e. slightly dependent on the material and the magnitude of plastic deformation. A similar fact was found for lamina spacings. This paper aims to derive these probability distributions from "first principles". As such two propositions are suggested: microstructures that are compatible with the prescribed physical and geometrical conditions are equiprobable, and the product misorientation x spacing cannot be smaller than some number. It turns out that the low bound for misorientation x spacing can be chosen in such a way that the experimental and theoretical curves are close. The corresponding value of the low bound is in a nanoscale range.
机译:休斯(Hughes),汉森(Hansen)及其合作者发表的一系列论文中,确定了在压缩和轧制过程中形成的层状微结构具有令人惊讶的特性:取向错误的概率分布是指平均取向错误,这是普遍的,即在某种程度上取决于材料和材料的大小。塑性变形。对于薄片间距也发现了类似的事实。本文旨在从“第一原理”中得出这些概率分布。因此,提出了两个建议:与规定的物理和几何条件兼容的微结构是等概率的,并且产品取向错误x间距不能小于某个数目。事实证明,可以以实验和理论曲线接近的方式选择取向错误x间距的下限。下界的相应值在纳米范围内。

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