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磁场对Bi-Mn合金两相区中MnBi相凝固组织的影响
引用本文:王晖,任忠鸣,邓康,徐匡迪.磁场对Bi-Mn合金两相区中MnBi相凝固组织的影响[J].金属学报,2002,38(1):41-46.
作者姓名:王晖  任忠鸣  邓康  徐匡迪
作者单位:上海大学材料科学与工程学院,上海,200072
基金项目:国家自然科学基金59871026,上海市曙光计划98SG37资助项目
摘    要:将Bi-3%Mn和Bi-6%Mn合金加热至固液两相区内低于MnBi相Curie点的温度,保温30min后在一定条件下降温凝固,施加0-1.0T磁场,结果表明,磁场对MnBi相凝固组织和材料磁性能有明显的影响,Bi-Mn合金在固液两相区恒温时,MnBi晶体在大于0.1T的磁场作用下沿磁场方向排列和优先长大,定向排列因子г随外磁场强度的增大而提高,在磁场作用下的降温凝固过程中,沿磁场方向MnBi晶体长度增加,其平均长度随磁场的增大和合金在磁场中凝固时间的延长而增加,此外,磁取向试样具有明显的磁各向异性,平行定向排列方向的剩显著增强,而垂直方向的磁性很弱,从铁磁性MnBi晶体的磁各向异性和磁化晶体之间磁相互作用出发,建立了MnBi晶体的磁场中取向和优先长大的理论模型,并利用该模型对实验结果进行了讨论。

关 键 词:磁场  Bi-Mn合金  MnBi  半固态凝固  定向排列  磁性能  铋合金
文章编号:0412-1961(2002)01-0041-06
修稿时间:2001年3月7日

EFFECTS OF A STATIC MAGNETIC FIELD ON SOLIDIFICATION STRUCTURE OF MnBi PHASE IN SEMI-SOLIDIFIED Bi-Mn ALLOY
WANG Hui,REN Zhongming,DENG Kang,XU Kuangdi.EFFECTS OF A STATIC MAGNETIC FIELD ON SOLIDIFICATION STRUCTURE OF MnBi PHASE IN SEMI-SOLIDIFIED Bi-Mn ALLOY[J].Acta Metallurgica Sinica,2002,38(1):41-46.
Authors:WANG Hui  REN Zhongming  DENG Kang  XU Kuangdi
Abstract:Influences of a static magnetic field(0-1.0 T) on the solidification structure and magnetic property of the semi-solidified Bi-3%Mn and Bi-6%Mn alloys have been investigated. In the present of the magnetic field, the alloys were maintained at semi-solid state for a certain time and then solidified. It was shown that alignment and preferential growth of MnBi crystals along the applied field occurred. The alignment degree of MnBi was increased with the increase of the applied field, and the mean length of elongated MnBi crystals was increased with the increase of the applied field and the prolongation of solidification time. Moreover, the remained magnetic flux intensity along the aligned direction of Bi-Mn alloys in the case with a magnetic field was found to be strongly anisotropic and nearly double of that without magnetic field. A model was proposed to explain the alignment and preferential growth of ferromagnetic MnBi crystals in a magnetic field in terms of the magnetic anisotropism and the interaction between the crystals.
Keywords:magnetic field  Bi-Mn alloy  MnBi  semi-solidification  alignment  magnetic property
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