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Energetic balance and kinetics for the decomposition of supersaturated Ti1-xAlxN

机译:过饱和Ti1-xAlxN分解的能量平衡与动力学

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Ti1-xAlxN films have been shown to exhibit superior mechanical and thermal properties and are thus widely used for industrial applications. We have recently reported, that metastable NaCl-structure (c) Ti1-xAlxN decomposes to form c-TiN and c-AlN domains, and that the chemical requirement for spinodal decomposition is fulfilled over a broad composition and temperature range. Ab initio calculations showed that the maximum metastable solubility limit of AlN in c-TiN is in the range of 0.64-0.74, depending on the configurational entropy. The enthalpy change for decomposition of supersaturated c-Ti1-xAlxN into c-TiN and c-AlN has a maximum of similar to 0.146 eV/at (28.18 kJ/mol) at x similar to 0.61. Here, we use continuum mechanical investigations in addition to ab initio calculations to consider also the previously not described contribution of strain and surface energy on the energetic balance for this decomposition process. Based on these results a simple kinetic model for the decomposition process of c-Ti1-xAlxN can be developed. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:Ti1-xAlxN薄膜已被证明具有优异的机械和热性能,因此被广泛用于工业应用。我们最近报道了亚稳态 NaCl 结构 (c) Ti1-xAlxN 分解形成 c-TiN 和 c-AlN 结构域,并且在广泛的组成和温度范围内满足了旋节分解的化学要求。从头开始计算表明,AlN在c-TiN中的最大亚稳溶解度极限在0.64-0.74范围内,具体取决于构型熵。过饱和c-Ti1-xAlxN分解为c-TiN和c-AlN的焓变最大值为0.146 eV/at(28.18 kJ/mol),x处的焓变为0.61。在这里,除了从头开始计算外,我们还使用连续介质力学研究来考虑以前未描述的应变和表面能对该分解过程的能量平衡的贡献。基于这些结果,可以建立c-Ti1-xAlxN分解过程的简单动力学模型。(c) 2006 Acta Materialia Inc.,由Elsevier Ltd.出版。保留所有权利。

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