Magnetic properties and crystallization behavior of nanocrystalline FeSiBPCuAl alloys

被引:0
|
作者
DONG BangShao1
2 Magnetic Materials and Advanced Devices Departments
机构
关键词
nanocrystalline alloy; glass forming ability; saturation magnetization; coercive force;
D O I
暂无
中图分类号
TG131 [合金学理论];
学科分类号
080502 ;
摘要
Magnetic properties and crystallization behavior of nanocrystalline (Fe83.3Si4B8P4Cu0.7)100-xAlx (x=0-1.5 at%) alloys were investigated in this study.Experimental results show that coercive force decreases and saturation magnetization slightly decreases with the increase of Al content,but the glass forming ability has been improved at the same time.Crystallization behavior including the evolution of microstructure has also been studied.The growth of α-Fe precipitated from the matrix is quick when it is annealed by conventional method and the mean size of α-Fe grains increases from below 2-3 nm to 18-29 nm.Nanocrystalline (Fe83.3Si4B8P4Cu0.7)99Al1 alloy with coercive force of 8.9 A/m and saturation magnetization of 187 emu/g is probably a promising candidate in the field of soft magnetic materials.
引用
收藏
页码:1590 / 1593
页数:4
相关论文
共 50 条
  • [1] Magnetic properties and crystallization behavior of nanocrystalline FeSiBPCuAl alloys
    Dong BangShao
    Zhou ShaoXiong
    Hu MingJun
    Kong FanLi
    Chen WenZhi
    Shen BaoLong
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2010, 53 (06) : 1590 - 1593
  • [2] Magnetic properties and crystallization behavior of nanocrystalline FeSiBPCuAl alloys
    BangShao Dong
    ShaoXiong Zhou
    MingJun Hu
    FanLi Kong
    WenZhi Chen
    BaoLong Shen
    Science China Technological Sciences, 2010, 53 : 1590 - 1593
  • [3] Influence of P and C co-alloying on soft magnetic properties and crystallization behavior of FeSiBPCCu nanocrystalline alloys
    Xie, Lei
    Li, Qiang
    Chang, Chuntao
    Fan, Xueru
    He, Aina
    Cai, Yuanfei
    Dong, Yaqiang
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 33 : 3106 - 3116
  • [4] Surface crystallization and magnetic properties of FeCuSiBNbMo melt-spun nanocrystalline alloys
    Wan, Fangpei
    Liu, Tao
    Kong, Fengyu
    Wang, Anding
    Tian, Muqin
    Song, Jiancheng
    Zhang, Jianhua
    Chang, Chuntao
    Wang, Xinmin
    MATERIALS RESEARCH BULLETIN, 2017, 96 : 275 - 280
  • [5] Crystallization mechanism and its correlation with structural and soft magnetic properties of FeSiBPCu nanocrystalline alloys
    X. F. Miao
    Y. G. Wang
    Journal of Materials Science, 2012, 47 : 1745 - 1750
  • [6] The influence of Al content on glass forming ability and magnetic properties of high Ms nanocrystalline FeSiBPCuAl alloy
    Dong, B. S.
    Zhou, S. X.
    Hu, M. J.
    Chen, W. Z.
    Shen, B. L.
    MATERIALS LETTERS, 2010, 64 (06) : 736 - 738
  • [7] Magnetic properties and structure of nanocrystalline FINEMET alloys with various iron contents
    N. V. Mushnikov
    A. P. Potapov
    D. A. Shishkin
    A. V. Protasov
    O. A. Golovnya
    N. N. Shchegoleva
    V. S. Gaviko
    K. Yu. Shunyaev
    V. A. Bykov
    Yu. N. Starodubtsev
    V. Ya. Belozerov
    The Physics of Metals and Metallography, 2015, 116 : 663 - 670
  • [8] Magnetic properties and structure of nanocrystalline FINEMET alloys with various iron contents
    Mushnikov, N. V.
    Potapov, A. P.
    Shishkin, D. A.
    Protasov, A. V.
    Golovnya, O. A.
    Shchegoleva, N. N.
    Gaviko, V. S.
    Shunyaev, K. Yu.
    Bykov, V. A.
    Starodubtsev, Yu. N.
    Belozerov, V. Ya.
    PHYSICS OF METALS AND METALLOGRAPHY, 2015, 116 (07) : 663 - 670
  • [9] Role of Si Addition on the Crystallization Behavior, Thermal Stability, and Magnetic Properties of the FeNiMoBSi Alloys
    Wang, Yongfei
    Xu, Jia
    Liu, Yanjie
    Liu, Zhongwu
    JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM, 2022, 35 (02) : 595 - 601
  • [10] Role of Si Addition on the Crystallization Behavior, Thermal Stability, and Magnetic Properties of the FeNiMoBSi Alloys
    Yongfei Wang
    Jia Xu
    Yanjie Liu
    Zhongwu Liu
    Journal of Superconductivity and Novel Magnetism, 2022, 35 : 595 - 601