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强磁场对熔融织构GdBCO块材中Gd_2BaCuO_5颗粒的取向作用
引用本文:王雷,马衍伟,王栋樑,王军红,Satoshi Awaji,Kazuo Watanabe.强磁场对熔融织构GdBCO块材中Gd_2BaCuO_5颗粒的取向作用[J].低温物理学报,2010(2).
作者姓名:王雷  马衍伟  王栋樑  王军红  Satoshi Awaji  Kazuo Watanabe
作者单位:中国科学院电工研究所;日本东北大学强磁场实验室;
基金项目:国家自然科学基金(批准号:50572104,50777062 )资助的课题
摘    要:在GdBCO超导块材的熔融织构生长过程中施加10T强磁场,通过SEM研究强磁场对Gd2BaCuO5(Gd211)颗粒的影响.研究发现棒状Gd211颗粒在强磁场的作用下发生了择优取向——Gd211颗粒的长边与磁场方向平行.延长样品处于熔融状态的时间,发现Gd211颗粒的取向性明显增加.通过分析熔融织构的相变过程,结合磁取向能的公式,讨论了取向性增加的原因.同时,探讨了Gd211颗粒的择优取向对样品的超导性能产生的影响.

关 键 词:强磁场  Gd211颗粒  磁取向  GdBCO块材  

ORIENTATION OF GD211 PARTICLES IN MELT TEXTURED GDBCO BULK PREPARED UNDER A MAGNETIC FIELD
WANG Lei MA Yan-wei WANG Dong-liang WANG Jun-hong Satoshi Awaji Kazuo Watanabe Institute of Electrical Engineering,Chinese Academy of sciences,Beijing ,China High Field Laboratory for Superconducting Materials,Institute for Materials Research,Tohoku University,Sendai -,Japan.ORIENTATION OF GD211 PARTICLES IN MELT TEXTURED GDBCO BULK PREPARED UNDER A MAGNETIC FIELD[J].Chinese Journal of Low Temperature Physics,2010(2).
Authors:WANG Lei MA Yan-wei WANG Dong-liang WANG Jun-hong Satoshi Awaji Kazuo Watanabe Institute of Electrical Engineering  Chinese Academy of sciences  Beijing  China High Field Laboratory for Superconducting Materials  Institute for Materials Research  Tohoku University  Sendai -  Japan
Institution:WANG Lei1 MA Yan-wei1 WANG Dong-liang1 WANG Jun-hong1 Satoshi Awaji2 Kazuo Watanabe2 1Institute of Electrical Engineering,Chinese Academy of sciences,Beijing 100190,China 2High Field Laboratory for Superconducting Materials,Institute for Materials Research,Tohoku University,Sendai 980-8577,Japan
Abstract:GdBCO Bulks were fabricated by the Melt textured process under a magnetic field of 10T. The microstructure of top surfaces of these bulks were studied using scanning electron microscope (SEM). The results show that acicular Gd2BaCuO5(Gd211) particles tend to be oriented with the long length parallel to the magnetic field,and the orientation can be improved by keeping a bulk in melt state for a longer time. A modal was proposed to investigate the effect of orientation of 211 particles on pinning effect,and t...
Keywords:Magnetic field  Gd211 particles  magnetic orientation  GdBCO bulk  
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