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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural relationship between an icosahedral phase and a 1/1 cubic crystalline approximant in an Al-Li-Cu alloy system, studied by atomic-scale observations of electron microscopy
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Structural relationship between an icosahedral phase and a 1/1 cubic crystalline approximant in an Al-Li-Cu alloy system, studied by atomic-scale observations of electron microscopy

机译:通过电子显微镜的原子尺度观察研究Al-Li-Cu合金系统中二十面体相与1/1立方晶近似物之间的结构关系

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摘要

We observed cubic R-phase and icosahedral I-phases in the Al-Li-Cu system by high-resolution transmission electron microscopy (HREM). The images of both the phases taken from three-fold axes showed the presence of the same kind of atom clusters, which are most likely to be the small triacontahedra. The R-phase was found to contain stacking faults along the {110} plane. This stacking fault is created by the insertion of extra atom units, which destroys the symmetry of the lattice, yet the symmetrical configuration of the facing clusters is well preserved.
机译:我们通过高分辨率透射电子显微镜(HREM)观察到Al-Li-Cu系统中的立方R相和二十面体I相。从三重轴获取的两个相的图像都显示存在相同种类的原子团簇,这些原子团簇很可能是小三面体。发现R相沿{110}平面包含堆叠故障。这种堆垛层错是由于插入额外的原子单元而造成的,这破坏了晶格的对称性,但是很好地保持了面向簇的对称构型。

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