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Theory of Diffusional Phase Transformations in Nanocrystalline Alloys upon Severe Plastic Deformation: II. Decomposition of Nonideal Solid Solutions

机译:严重塑性变形后纳米晶合金的扩散相变理论:II。非理想固溶体的分解

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A theoretical model of the decomposition of regular solid solutions under the effect of fluxes of non-equilibrium vacancies is developed. The kinetics of the redistribution of the alloy components and the shape of the stationary profiles of the components have been investigated depending on the relationship between the diffusional mobilities of the components, alloy composition, the intensities of fluxes of nonequilibrium vacancies, and the parameters that characterize the interaction of atoms of various types. It is shown that even in the range of thermodynamic stability of the alloy the allowance for the nonideality of the solid solution leads to new qualitative features in the decomposition process. In particular, the degree of decomposition increases with approaching the spinodal; the formation of regions of a fixed composition becomes possible, and in special cases, the precipitation of pure components occurs.
机译:建立了在非平衡空位通量作用下规则固溶体分解的理论模型。根据组分的扩散迁移率,合金成分,非平衡空位的通量强度以及表征合金的参数之间的关系,研究了合金组分的重新分布动力学和组分的静态轮廓形状。各种类型原子的相互作用。结果表明,即使在合金的热力学稳定性范围内,固溶体非理想性的余量也会在分解过程中导致新的定性特征。特别地,分解程度随着接近旋节线而增加。这样就可以形成固定成分的区域,在特殊情况下,会发生纯组分的沉淀。

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