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Phase stability and alloy-related trends in Ti–Al–N Zr–Al–N and Hf–Al–N systems from first principles

机译:Ti-Al-NZr-Al-N和Hf-Al-N系统的相稳定性和合金相关趋势从第一原理开始

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摘要

Transition metal aluminium nitride (TM–Al–N) thin films are valued for their excellent mechanical (e.g. hardness) as well as protective (e.g. oxidation resistance) properties. This paper addresses the structure and phase stability of group IVB TM–Al–N systems Ti1−xAlxN, Zr1−xAlxN, and Hf1−xAlxN. The predicted stability regions of the rock salt cubic structures are x ≤ 0.7, x ≤ 0.45, and x ≤ 0.45, respectively, while the wurtzite-type single phase field is obtained for x ≥ 0.7, x ≥ 0.68, and x ≥ 0.62 respectively. The predicted phase stability regions and the broad dual-phase transition regions in the case of Zr1−xAlxN and Hf1−xAlxN are validated by experiments. Furthermore, the phase transition from cubic to wurtzite with increasing Al content in the alloys is correlated with changes of electronic structure and bonding in the systems.
机译:过渡金属氮化铝(TM-Al-N)薄膜因其出色的机械性能(例如硬度)和保护性(例如抗氧化性)而受到重视。本文讨论了IVB TM–Al–N组Ti1-xAlxN,Zr1-xAlxN和Hf1-xAlxN的结构和相稳定性。岩盐立方结构的预测稳定区域分别为x≤0.7,x≤0.45和x≤0.45,而纤锌矿型单相场分别针对x≥0.7,x≥0.68和x≥0.62获得。通过实验验证了Zr1-xAlxN和Hf1-xAlxN情况下的预测相稳定区域和宽泛的双相转变区域。此外,随着合金中Al含量的增加,立方晶向纤锌矿的相变与系统中电子结构和键合的变化有关。

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