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首页> 外文期刊>Philosophical Magazine Letters >Grain growth rate for coupled grain boundary migration and grain rotation in nanocrystalline materials
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Grain growth rate for coupled grain boundary migration and grain rotation in nanocrystalline materials

机译:叶片晶界迁移的晶粒生长速率和纳米晶体材料的晶粒旋转

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摘要

Grain rotation has been found to be an important mechanism of microstructure evolution in addition to curvature-driven grain boundary migration in nanocrystalline materials. Grains coalesce due to rotation and this provides an additional mechanism of grain growth. We show that for growth by coupled migration and rotation coalescence the average grain size grows as indicating that the coupled problem is surprisingly more stable to grain growth. We then present an appropriate rotationally invariant multiphase field model which accounts for grain rotation to corroborate the theoretical result.
机译:除了纳米晶体材料中的曲率驱动的晶界迁移之外,已经发现谷物旋转是微观结构演化的重要机制。 由于旋转,谷物聚结,这提供了粮食生长的额外机制。 我们表明,对于通过耦合迁移和旋转聚结的增长,平均晶粒尺寸的增长,表明耦合问题令人惊讶更稳定,对谷物生长更稳定。 然后,我们介绍适当的旋转不变的多相现场模型,其考虑了晶粒旋转以证实理论结果。

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