简介概要

Effect of Mo on properties of the industrial Fe–B-alloy-derived Fe-based bulk metallic glasses

来源期刊:International Journal of Minerals Metallurgy and Materials2017年第8期

论文作者:Kai-rui Zhu Wei Jiang Ji-li Wu Bo Zhang

文章页码:926 - 930

摘    要:The experimental results concerning the effects of Mo on the glass-forming ability(GFA), thermal stability, and mechanical, anticorrosion, and magnetic properties of an(Fe71.2B24Y4.8)96Nb4 bulk metallic glass(BMG) were presented. An industrial Fe–B alloy was used as the raw material, and a series of Fe-based BMGs were synthesized. In BMGs with the Mo contents of approximately 1at%–2at%, the cast alloy reached a critical diameter of 6 mm. The hardness and fracture strength also reached their maximum values in this alloy system. However, the anticorrosion and magnetic properties of the BMGs were not substantially improved by the addition of Mo. The low cost, good GFA, high hardness, and high fracture strength of the Fe-based BMGs developed in this work suggest that they are potential candidates for commercial applications.

详情信息展示

Effect of Mo on properties of the industrial Fe–B-alloy-derived Fe-based bulk metallic glasses

Kai-rui Zhu1,Wei Jiang1,Ji-li Wu1,2,Bo Zhang1,2

1. School of Materials Science and Engineering, Hefei University of Technology2. Anhui Provincial Key Lab of Functional Materials and Devices, Hefei University of Technology

摘 要:The experimental results concerning the effects of Mo on the glass-forming ability(GFA), thermal stability, and mechanical, anticorrosion, and magnetic properties of an(Fe71.2B24Y4.8)96Nb4 bulk metallic glass(BMG) were presented. An industrial Fe–B alloy was used as the raw material, and a series of Fe-based BMGs were synthesized. In BMGs with the Mo contents of approximately 1at%–2at%, the cast alloy reached a critical diameter of 6 mm. The hardness and fracture strength also reached their maximum values in this alloy system. However, the anticorrosion and magnetic properties of the BMGs were not substantially improved by the addition of Mo. The low cost, good GFA, high hardness, and high fracture strength of the Fe-based BMGs developed in this work suggest that they are potential candidates for commercial applications.

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