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首页> 外文期刊>American Journal of Science >INTERLAYER GROWTH KINETICS OF A BINARY SOLID-SOLUTION BASED ON THE THERMODYNAMIC EXTREMAL PRINCIPLE: APPLICATION TO THE FORMATION OF SPINEL AT PERICLASE-CORUNDUM CONTACTS
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INTERLAYER GROWTH KINETICS OF A BINARY SOLID-SOLUTION BASED ON THE THERMODYNAMIC EXTREMAL PRINCIPLE: APPLICATION TO THE FORMATION OF SPINEL AT PERICLASE-CORUNDUM CONTACTS

机译:基于热力学极值原理的二元固溶体的层间增长动力学:在胶束-刚玉接触中尖晶石的形成中的应用

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摘要

A thermodynamic model has been developed for interlayer growth in a binary system between two phases of fixed composition producing an intermediate solid-solution phase. Thereby long-range diffusion, interface migration and generation/annihilation of vacancies at the reaction interfaces have been considered as potentially rate limiting. The coupling among these processes governs overall growth rate, position of the Kirkendall plane and the compositions of the solid-solution phase at the reaction interfaces. Model calculations illustrating the relations between the corresponding kinetic parameters and system evolution are presented. In particular, the systematics of non-equilibrium element partitioning across moving reaction interfaces is addressed. It is found that the deviation from equilibrium element partitioning at a moving reaction interface is a more sensitive monitor for the departure from local equilibrium than the deviation from parabolic growth behavior. Finally, the model is applied to interlayer growth of magnesio-aluminate spinel.
机译:已经开发了一种热力学模型,用于在二元体系中固定组成的两个相之间产生中间固溶相的中间层生长。因此,远程扩散,界面迁移和反应界面处空位的产生//灭被认为是潜在的速率限制。这些过程之间的耦合决定了整体生长速率,柯肯德尔平面的位置以及反应界面上固溶相的组成。模型计算说明了相应的动力学参数和系统演化之间的关系。特别地,解决了跨移动反应界面的非平衡元素分配的系统学。发现在移动反应界面处平衡元素分配的偏差比离抛物线生长行为的偏差更敏感地监控了局部平衡的偏离。最后,将该模型应用于镁铝尖晶石的层间生长。

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