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Grain Coarsening - Insights from Curvature Modeling Cyril Stanley Smith Lecture

机译:晶粒粗化-曲率建模Cyril Stanley Smith演讲的见解

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摘要

Normal and abnormal grain coarsening, NGC and AGC, are briefly reviewed and discussed in the light of grain curvature and kinetic models - notably those of Mullins. The critical importance of the log-normal grain size distribution determined by Hull and the grain shapes measured by Rhines and Craig are reviewed. It is shown that in NGC, as in particle coarsening, the largest grains or particles in their respective distributions grow at the rates, larger by a factor of the ratio of the largest to average size, required to maintain the size distributions during coarsening. The particle curvature removal model for NGC anchorage, giving = 0.2 r/f, developed here, matches surprisingly well the data reviewed by Manohar et al. Finally the need is indicated for further experimental and modeling studies to test the current ideas and to answer the many remaining questions.
机译:根据晶粒曲率和动力学模型,特别是穆林斯模型,简要回顾和讨论了正常和异常晶粒粗化NGC和AGC。回顾了由赫尔确定的对数正态晶粒尺寸分布以及由莱茵斯和克雷格测量的晶粒形状的至关重要性。结果表明,在NGC中,如同颗粒粗化一样,最大的晶粒或颗粒在其各自的分布中以保持粗化过程中尺寸分布所需的最大尺寸与平均尺寸之比的比率增大。这里开发的NGC锚固的粒子曲率去除模型给出R = 0.2 r / f,与Manohar等人回顾的数据令人惊讶地很好地匹配。最后,表明需要进一步的实验和建模研究,以测试当前的想法并回答许多剩余的问题。

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