Diffusional relaxation around martensitically transformed Fe-Co particles in a Cu matrix

R. Monzen , M. Kato , T. Mori
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引用次数: 18

Abstract

Small precipitate f.c.c. Fe-Co particles in a Cu matrix transform martensitically into b.c.c. particles by simple cooling a Cu-1.4 mass% Fe-0.6 mass% Co alloy to the liquid nitrogen temperature. Transmission electron microscopy has revealed that the small transformed particles are free from dislocations around them. However, the transformation strains create elastic fields in and around the particles. Successive annealing results in the occurrence of the diffusional relaxation of the elastic fields as envisaged by the changes in the Moiré fringes in the Fe-Co particles. The mechanism and kinetics of the diffusional relaxation are analyzed both experimentally and theoretically. It is found that diffusion at the interfaces between the Cu matrix and Fe-Co particles causes the relaxation and that the activation energy of the interfacial diffusion is 1.6eV.

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Cu基体中马氏体相变Fe-Co颗粒周围的扩散弛豫
将Cu-1.4质量% Fe-0.6质量% Co合金简单冷却到液氮温度后,Cu基体中的Fe-Co小析出物f.c.c转变为b.c.c。透射电子显微镜显示,转化后的小颗粒周围没有位错。然而,转变应变在粒子内部和周围产生弹性场。连续退火导致弹性场的扩散弛豫,正如Fe-Co粒子中莫尔条纹的变化所设想的那样。实验和理论分析了扩散弛豫的机理和动力学。结果表明,Cu基体与Fe-Co颗粒界面处的扩散引起了弛豫,界面扩散的活化能为1.6eV。
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