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Computational phase diagrams for the Nd-based magnets based on the combined ab initio/CALPHAD approach

机译:基于ND基磁体的计算相图,基于AB Initio / Calphad方法的基于ND基磁体

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摘要

Sintered magnets hold a high amount of oxygen because of the strong affinity of oxygen with lanthanide elements, where oxygen forms variety of stable and metastable oxide phases. In order to control microstructures, which can affect magnetic properties, it is important to understand how oxygen behaves during the fabrication processes. A combined ab initio/CALPHAD approach was employed to estimate the phase equilibria with oxygen in microstructures of the magnets. It is demonstrated that this approach is efficient for systems in which available experimental and theoretical thermodynamic information is limited. (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:烧结磁铁由于氧化镧元件的强浓度,氧气具有强氧气,其中氧气形成各种稳定和稳定的氧化阶段。 为了控制会影响磁性的微结构,重要的是要了解在制造过程中的氧气行为如何。 采用组合的AB初始/鱿鱼方法来估计磁体的微观结构中具有氧的相平衡。 结果证明,这种方法对于可用的实验和理论热力学信息有限的系统是有效的。 (c)2018 Acta Materialia Inc. elsevier有限公司出版。保留所有权利。

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