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首页> 外文期刊>Acta Materialia >SIMULATION OF GRAIN GROWTH IN THIN FILMS WITH COLUMNAR MICROSTRUCTURE
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SIMULATION OF GRAIN GROWTH IN THIN FILMS WITH COLUMNAR MICROSTRUCTURE

机译:柱状微观结构模拟薄膜的晶粒长大

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Grain growth in films on substrates was simulated under the suppositions that (1) all the grain boundaries have identical energy and mobility, (2) all the grains are columnar and differ in their diameter only, and (3) the growth process is inhibited by a constant drag force depending on the film thickness. The character of grain growth depends on the ratio of the most probable grain diameter in the initial micro- structure to the film thickness. In the case when the ratio corresponds to that observed experimentally, the growth process evolves as abnormal grain growth (AG). It has been demonstrated for the first time that the AG process can develop in the absence of an additional driving force. The cessation of AG, when the fine-grained matrix is still present, was shown to result from the exhaustion of relatively small grains that could be consumed. The additional driving force resulting from a decreased surface energy of some grains leads to an increase of the volume fraction of abnormally large grains and to texture amplification. Texture development during grain growth can also take place in the absence of any additional driving force. Inten- sification of the AG results in texture enhancement.
机译:在以下条件下模拟了基板上薄膜的晶粒生长:(1)所有晶粒边界具有相同的能量和迁移率;(2)所有晶粒均为柱状且仅直径不同;(3)晶粒生长受到抑制恒定的阻力取决于薄膜的厚度。晶粒长大的特性取决于初始微结构中最可能的晶粒直径与薄膜厚度的比值。在该比率与实验观察到的比率相对应的情况下,生长过程会随着异常晶粒生长(AG)而发展。首次证明了AG工艺可以在没有附加驱动力的情况下发展。当细颗粒基质仍然存在时,AG的停止显示是由于消耗了相对较小的谷物而导致的。由于某些晶粒的表面能降低而产生的附加驱动力导致异常大晶粒的体积分数增加,并导致纹理放大。在没有任何其他驱动力的情况下,晶粒生长过程中的纹理发展也可以发生。强化AG可以增强纹理。

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