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Compositions design of Co-Fe-based bulk metallic alloys
Author(s) -
Dechuan Yu,
Wenkai Zhang,
Wanshun Zhang,
Chongwei Zheng
Publication year - 2022
Publication title -
materials research express
Language(s) - English
Resource type - Journals
ISSN - 2053-1591
DOI - 10.1088/2053-1591/ac64e9
Subject(s) - ternary operation , cluster (spacecraft) , amorphous metal , materials science , intersection (aeronautics) , binary number , metal , crystallography , metallurgy , chemistry , computer science , alloy , mathematics , arithmetic , engineering , programming language , aerospace engineering
Glass forming ability (GFA) is one of the key factors hindering the application of bulk metallic glasses (BMGs). In this paper, a cluster-related method was used to design good glass-formers in the complex Co-Fe-based system. A novel Co-centered Co-Mo binary topologically packed cluster Co-Co 8 Mo 4 with 12-coordination number was found and used. The basic ternary composition in Co-Mo-B system is calculated based on an intersection of cluster lines B-B 2 Co 8 and Co-Co 8 Mo 4 . Based on this, a series of novel Co-Fe-based glass-formers with high GFA, were quickly designed using the method of similar element replacement and microalloying. The best glass-former is (Co 27.5 Fe 27.5 Mo 12.2 Cr 12.2 B 16 P 4.6 ) 98 Y 2 . The source of high GFA of designed glass-formers was also discussed. The results of this paper would offer researchers a novel insight in understanding the source of high GFA of Co/Fe-based system, and lay a solid foundation for exploring Co/Fe-Mo-based glass-formers via newly found Co-Mo binary cluster.

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