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STRUCTURAL DEFECT AND INTERNAL STRESS ARRANGEMENT IN NANOCRYSTALLINE Fe73.5Cu1Nb3Si13.5B9 |
LIU Tao; PU Yuxie; ZHAO Zhongtao; MA Ruzhang(University of Sciene and technology Beijing; 100083). GUO Yinghuan(Institute of High Energy Physics;Chinese Academiy of Sciences;Beijing 1000800)(Manuscript received 1994-07-11;in revised form 1994-12-01) |
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Cite this article:
LIU Tao; PU Yuxie; ZHAO Zhongtao; MA Ruzhang(University of Sciene and technology Beijing; 100083). GUO Yinghuan(Institute of High Energy Physics;Chinese Academiy of Sciences;Beijing 1000800)(Manuscript received 1994-07-11;in revised form 1994-12-01). STRUCTURAL DEFECT AND INTERNAL STRESS ARRANGEMENT IN NANOCRYSTALLINE Fe73.5Cu1Nb3Si13.5B9. Acta Metall Sin, 1995, 31(16): 159-163.
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Abstract Variation of structural defects of nanocrystalline Fe73.5Cu1Nb3Si13.5B9 alloy with the annealing temperature was studied by the positron annihilation technique and micromagnetism method. It is concluded that quasidislocation dipoles involved from the preparation of amorphous alloys and crystallization have a great effect on its soft magnetic properties and can explain the magnetic behaviours at the optimal annealing temperature. (Correspondent:LIU Tao, Department off Material Physics, University of Sciene and Technology Beijing,Beijing 100083)
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