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Phase stabilization principle and precipitate-host lattice influences for Al-Mg-Si-Cu alloy precipitates

机译:相稳定原理和析出物 - 主晶格对al-mg-si-Cu合金沉淀物的影响

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摘要

In this work, we seek to elucidate a common stabilization principle for the metastable and equilibrium phases of the Al–Mg–Si–Cu alloy system, through combined experimental and theoretical studies. We examine the structurally known well-ordered Al–Mg–Si–Cu alloy metastable precipitates along with experimentally observed disordered phases, using high angle annular dark field scanning transmission electron microscopy. A small set of local geometries is found to fully explain all structures. Density functional theory based calculations have been carried out on a larger set of structures, all fully constructed by the same local geometries. The results reveal that experimentally reported and hypothetical Cu-free phases from the set are practically indistinguishable with regard to formation enthalpy and composition. This strongly supports a connection of the geometries with a bulk phase stabilization principle. We relate our findings to the Si network substructure commonly observed in all Mg–Al–Si(–Cu) metastable precipitates, showing how this structure can be regarded as a direct consequence of the local geometries. Further, our proposed phase stabilization principle clearly rests on the importance of metal-Si interactions. Close links to the Al–Mg–Si precipitation sequence are proposed.
机译:在这项工作中,我们试图通过结合实验和理论研究,阐明Al-Mg-Si-Cu合金系统的亚稳态和平衡相的共同稳定原理。我们使用高角度环形暗场扫描透射电子显微镜检查了结构上已知有序的Al-Mg-Si-Cu合金亚稳沉淀以及实验观察到的无序相。发现了一小组局部几何形状可以完全解释所有结构。基于密度泛函理论的计算已在较大的一组结构上进行,所有结构均由相同的局部几何结构完全构建。结果表明,实验报告的和假设的无铜相在形成焓和组成方面几乎没有区别。这强烈支持几何体与体相稳定原理的连接。我们将我们的发现与通常在所有Mg-Al-Si(-Cu)亚稳沉淀物中观察到的Si网络亚结构相关联,表明该结构如何被视为局部几何结构的直接结果。此外,我们提出的相稳定原理显然基于金属-硅相互作用的重要性。提出了与Al-Mg-Si降水序列的紧密联系。

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