Formulation of Al–Bi–Sn immiscible alloys versus the solidification behaviors and structures

被引:0
|
作者
Peng Jia
Yue Li
Xun Hu
Jinyang Zhang
Xinying Teng
Degang Zhao
Qifeng Chen
Min Zuo
Qing Liu
Cheng Yang
机构
[1] University of Jinan,School of Materials Science and Engineering
[2] Shandong University of Science and Technology,Key Laboratory of Low Carbon Energy and Chemical Engineering, College of Chemical and Environmental Engineering
[3] Shandong University of Science and Technology,School of Materials Science and Engineering
[4] University of Jinan,School of Chemistry and Chemical Engineering
来源
关键词
Immiscible Alloys; Volumetric Fraction; Decreasing Aluminum Content; Secondary Phase Separation; Hypermonotectic Alloys;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, the Al100−x(Bi45Sn55)x (x = 5, 15, 25 and 35) alloys with varied elemental compositions were prepared to understand the correlations of the elemental composition with the solidification behaviors and structures of the alloys. The results showed that the Sfh, Smc, Sc-s2(Sn–Bi-rich, Al-rich) and Sc-s3(Sn–Bi-rich, Al-rich, Sn–Bi-rich) structures were formed successively with the decreasing aluminum content, due to the increased aggregation degree of droplets. The increased aggregation resulted from (1) the increased width of the miscibility gap (from 0 to 146 K); (2) the increased volumetric fraction of the minority phase particles (from 8.91 to 49.98%); (3) the increased time of the L–LPS (from 0 to 0.46 s); (4) the decreased solidification rate (from 10.2 to 4.6 mm s−1). The exchange of core and shell occurred in as-cast Al–Bi–Sn immiscible alloys. The quantitative relationship between the composition and the collision probability of droplets was established to reveal the inner reasons for structural evolution. In addition, the hot-spot effect of the lower melting point droplets was responsible for the coarser monotectic structure around the lower melting point particles. The results from this work are a useful reference for regulating structural configuration of immiscible alloys via manipulating the composition.
引用
收藏
页码:4384 / 4399
页数:15
相关论文
共 50 条
  • [21] An experimental study of the rapid continuous solidification of Al-Bi immiscible alloy
    He, J
    Zhao, JZ
    Wang, XF
    Li, ZY
    ACTA METALLURGICA SINICA, 2006, 42 (01) : 67 - 72
  • [22] Effect of Al Content on the Solidification Behaviors of Mg-Al Alloys
    Meng, Yi
    Yang, Yue
    Cao, Leigang
    Sun, Jian
    Cui, Jianzhong
    INTERNATIONAL JOURNAL OF METALCASTING, 2023, 17 (02) : 703 - 716
  • [23] Observation of Bi Coarsening and Dissolution Behaviors in Melting Al-Bi Immiscible Alloy
    Lu, Wen-Quan
    Zhang, Shu-Guang
    Li, Jian-Guo
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2016, 29 (09) : 800 - 803
  • [24] Correlation of composition, cooling rate and superheating temperature with solidification behaviors and microstructures of Al-Bi-Sn ribbons
    Jia, Peng
    Gao, Zhiran
    Hu, Xun
    Liu, Yang
    Zhang, Jinyang
    Yang, Zhongxi
    Teng, Xinying
    Zhao, Degang
    Wang, Yi
    Zhang, Shu
    Geng, Dongsheng
    MATERIALS RESEARCH EXPRESS, 2019, 6 (06)
  • [25] Structural morphologies of Cu-Sn-Bi immiscible alloys with varied compositions
    Ma, Bingqian
    Li, Jianqiang
    Peng, Zhijian
    Zhang, Guocai
    JOURNAL OF ALLOYS AND COMPOUNDS, 2012, 535 : 95 - 101
  • [26] The Influences of Micro-Alloying Element Sn and Magnetic Field on the Microstructure Evolution of Al-Bi Immiscible Alloys
    Chen, Shu
    Jiang, Hongxiang
    Zhao, Jiuzhou
    METALS, 2023, 13 (11)
  • [27] Phase equilibria and solidification of ternary Sn-Bi-Ag alloys
    Chen, Sinn-wen
    Wu, Hsin-jay
    Huang, Yu-chih
    Gierlotka, Wojciech
    JOURNAL OF ALLOYS AND COMPOUNDS, 2010, 497 (1-2) : 110 - 117
  • [28] SOLIDIFICATION OF UNDERCOOLED SN-BI AND PB-SB ALLOYS
    POWELL, GLF
    COLLIGAN, GA
    METALLURGICAL TRANSACTIONS, 1970, 1 (01): : 133 - &
  • [29] A study of directional solidification of faceted Bi-Sn alloys in microgravity
    Abbaschian, R
    Gokhale, AB
    Allen, DB
    Coriell, SR
    SOLIDIFICATION SCIENCE AND PROCESSING, 1996, : 73 - 84
  • [30] Solidification structures of Ti-Al-Cr alloys
    Shao, G
    Tsakiropoulos, P
    INTERMETALLICS, 1999, 7 (05) : 579 - 587