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Shock Synthesis of Decagonal Quasicrystals

机译:十方准晶体的激波合成

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摘要

The Khatyrka meteorite contains both icosahedral and decagonal quasicrystals. In our previous studies, icosahedral quasicrystals have been synthesized and recovered from shock experiments at the interface between CuAl5 and stainless steel 304 alloys. In this study, we report a new shock recovery experiment aimed at synthesizing decagonal quasicrystals similar to decagonite, natural Al71Ni24Fe5. Aluminum 2024 and permalloy 80 alloys were stacked together and shocked in a stainless steel 304 recovery chamber. Abundant decagonal quasicrystals of average composition Al73Ni19Fe4Cu2Mg0.6Mo0.4Mn0.3 with traces of Si and Cr were found along the recovered interface between the Al and permalloy. The experiment also synthesized AlNiFe alloy with the B2 (CsCl-type) structure and the metastable Al9Ni2 phase. We present chemical (scanning electron microscopy and electron microprobe) and structural (electron backscatter diffraction and transmission electron microscopy) characterization of the recovered phases and discuss the implications of this shock synthesis for the stability of quasicrystals during high-pressure shocks and for the interpretation of the phase assemblage found in Khatyrka.
机译:Khatyrka陨石包含二十面体和十边形准晶体。在我们以前的研究中,已经在CuAl5和304不锈钢合金之间的界面进行冲击实验并合成了二十面体准晶体。在这项研究中,我们报告了一个新的冲击恢复实验,旨在合成类似于十方石的天然Al71Ni24Fe5十方准晶体。将铝2024和坡莫合金80合金堆叠在一起,并在不锈钢304回收室中进行冲击。在铝和坡莫合金之间的回收界面上发现了平均组成为Al73Ni19Fe4Cu2Mg0.6Mo0.4Mn0.3的十方准晶体,其中含有微量的Si和Cr。实验还合成了具有B2(CsCl型)结构和亚稳Al9Ni2相的AlNiFe合金。我们目前的化学(扫描电子显微镜和电子显微探针)和结构(电子背散射衍射和透射电子显微镜)表征的恢复相,并讨论这种冲击合成对准晶体在高压冲击过程中的稳定性的影响和解释在Khatyrka中发现的相集合。

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