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首页> 外文期刊>Acta Metallurgica et Materialia >MIGRATION OF GRAIN BOUNDARIES IN ALUMINA INDUCED BY CHROMIA ADDITION
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MIGRATION OF GRAIN BOUNDARIES IN ALUMINA INDUCED BY CHROMIA ADDITION

机译:铬添加引起的铝晶界的迁移

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摘要

When alumina polycrystal is heat-treated at 1400 and 1500℃ with Al_2O_3-Cr_2O_3 powder mixtures, the grain boundaries migrate, forming behind them a solid solution enriched with Cr_2O_3. The migration rate increases with the heat-treatment temperature and the Cr_2O_3 content in the mixture. The driving force for the migration is believed to raise from the coherency strain in the Cr_2O_3 diffusion zone in front of the migrating grain boundaries. The migrating grain boundaries develop strong faceting with flat segments meeting at sharp edges. Because of the elastic anisotropy of alumina, the diffusional coherency strain energy G_c(n) varies with the surface orientation n of the retreating grain, but the variation is smooth at the minimum in the polar plot of G_c(n). Therefore, smoothly curved boundaries meeting at sharp edges are predicted for the growth shape contrary to the observed flat facet boundaries. It is suggested that the grain boundary mobility may vary with the grain surface orientation and therefore influence the growth shape.
机译:当氧化铝多晶与Al_2O_3-Cr_2O_3粉末混合物在1400和1500℃热处理时,晶界迁移,在其后形成富含Cr_2O_3的固溶体。迁移率随着热处理温度和混合物中Cr_2O_3含量的增加而增加。据认为,迁移的驱动力是由迁移晶界前的Cr_2O_3扩散区的相干应变引起的。迁移的晶界形成强刻面,并在锐利的边缘相遇。由于氧化铝的弹性各向异性,扩散相干应变能G_c(n)随后退晶粒的表面取向n的变化而变化,但在G_c(n)的极坐标图中变化最小。因此,与观察到的平坦小平面边界相反,对于生长形状,预测了在尖锐边缘处会合的平滑弯曲边界。建议晶界迁移率随晶面取向而变化,从而影响生长形状。

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