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Sm(Co_(0.82),Fe_(0.1),Cu_(0.06),Zr_(0.02))_(7.2)永磁材料中子辐照后退磁效应的计算分析

Neutron Radiation-Induced Demagnetization Effect of Sm(Co_(0.82),Fe_(0.1),Cu_(0.06),Zr_(0.02))_(7.2) Permanent Magnetic Materials
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摘要 运用于反应堆的永久磁铁处于中子辐照的恶劣环境,而辐照将会影响永久磁铁的性能。为评估中子辐照对永磁铁性能的影响程度,利用欧洲活化计算系统EASY-2007对耐2a中子辐照的Sm(Co0.82,Fe0.1,Cu0.06,Zr0.02)7.2永磁铁进行辐照计算,通过分析元素成分的变化来推测磁性能的衰减情况。结果表明,辐照后的永磁铁中Fe元素含量变化不大,而Sm元素含量大幅降低,这使得矫顽力降低严重。 The permanent magnet applied in reactor is in the adverse circumstances of neutron radiation-induced demagnetization, and the functions of permanent magnet will be influenced by irradiation. To investigate the performance of permanent magnetic materials under neutron radiation, the activation calculations of Sm (Co0.8z, Fe0.1, Cu0.06, Zr0.02)z.2 permanent magnet after 2 a neutron radiation were carried out with the European activation system EASY-2007. Then the magnetic attenuation can be predic- ted by analyzing the changes of elemental composition. The result shows that Fe content changes little after neutron radiation, but Sm content decreases significantly, which makes coercivity decrease seriously.
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2012年第2期248-251,共4页 Atomic Energy Science and Technology
基金 长江学者和创新团队发展计划资助项目(IRT0720)
关键词 辐射退磁 Sm2Co17型永磁材料 活化计算系统EASY-2007 radiation-induced demagnetization Sm2Co17 permanent magnetic materials activation system EASY-2007
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