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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Grain growth from homogeneous initial conditions: Anomalous grain growth and special scaling states
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Grain growth from homogeneous initial conditions: Anomalous grain growth and special scaling states

机译:均质初始条件下的晶粒生长:异常晶粒生长和特殊的结垢状态

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We used the large-Q Potts model on a two-dimensional lattice to study the evolution of the disordered cluster developed from a perfect hexagonal lattice with a single defect. The distribution functions were not stable, while the average area and the number of grains in the cluster grew linearly in time. However, the grains at the boundary of the cluster formed a well defined region which reached a special scaling state with time invariant distributions but no scale change, contrary to the result of Levitan [Boris Levitan, Phys. Rev. Lett. 72, 4057 (1994)]. The rate of propagation of disorder is the same as the rate of growth of the cluster. Abnormal grain growth can occur without anisotropy of surface energy. It requires only widely spaced, modest size differences in an initially homogeneous array of grains.
机译:我们在二维晶格上使用了大Q Potts模型来研究从具有单个缺陷的理想六边形晶格发展而来的无序簇的演化。分布函数不稳定,而簇中的平均面积和晶粒数随时间线性增长。然而,与列维坦的结果相反,团簇边界的晶粒形成了一个清晰的区域,该区域达到了特殊的缩放状态,具有时变分布,但没有缩放变化。牧师72,4057(1994)]。无序传播的速率与簇的生长速率相同。在没有表面能各向异性的情况下会发生异常的晶粒长大。它只需要在最初均匀的晶粒阵列中相距很远,大小适中的差异即可。

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