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Evaluating atomic mobility and interdiffusivity based on two-dimensional diffusion simulations and diffusion triple experiments

机译:基于二维扩散模拟和扩散三重实验评估原子迁移率和间隙性

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摘要

Diffusion triples or multiples are commonly considered as high-throughput experiments to study phase equilibrium and diffusion. But when extracting diffusion coefficients, they are treated as diffusion couples with one-dimensional (1D) composition variation, never taking advantage of their two-dimensional (2D) composition distributions. In this work, we present an efficient numerical inverse approach to directly evaluate composition-dependent atomic mobilities and full matrix of interdiffusivities based on a novel 2D diffusion simulation scheme, which was applied to the Co-Fe-Ni alloys by analyzing only one diffusion triple over a wide composition range. Its reliability was confirmed by comparing with traditional methods. (C) 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:扩散三元组或倍数通常被认为是研究相平衡和扩散的高通量实验。 但是当提取扩散系数时,它们被视为具有一维(1D)组成变化的漫射耦合,从未利用其二维(2D)组成分布。 在这项工作中,我们提出了一种有效的数值逆方法,直接评估基于新的2D扩散模拟方案的组合依赖性原子迁移率和全矩阵,其通过分析一个扩散三次来应用于CO-Fe-Ni合金。 在广泛的组成范围内。 通过与传统方法相比,确认其可靠性。 (c)2020 Acta Materialia Inc. eSeryvier有限公司发布所有权利。

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