Correlation between medium-range order structure and glass-forming ability for Al-based metallic glasses

Correlation between medium-range order structure and glass-forming ability for Al-based metallic glasses
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DOI:
10.1063/1.4863404
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发表时间:
2014-01
影响因子:
3.2
通讯作者:
N. Wu;M. Yan;L. Zuo;J. Q. Wang
N. Wu;M. Yan;L. Zuo;J. Q. Wang
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
N. Wu;M. Yan;L. Zuo;J. Q. Wang

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To clarify the correlation of medium-range order (MRO) structure with glass forming ability (GFA) of Al-based metallic glasses, Al 86 Ni 14-aYa (a = 2∼9 at. %) metallic glasses were analyzed by x-ray diffraction in detail and further verified by synchrotron high-energy x-ray diffraction. The prepeak that reflects the MRO structural evolution was found to be much sensitive to alloy composition. We have proposed an icosahedral supercluster MRO structure model in Al-TM (transition metal)-RE (rare earth metal) system, which consists of 12 RE(TM)-centered clusters on the vertex of icosahedral supercluster, one RE(TM)-centered clusters in the center, and TM(RE) atoms located at RE(TM)-centered cluster tetrahedral interstices in the icosahedral supercluster. It was indicated that the MRO structural stability mainly depends on the interaction of efficient dense packing and electrochemical potential equalization principle. The Al 86 Ni 9Y(La)5 alloys present good GFA due to the combination of the two structural factors.