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First principles study of transition-metal substitutions in Sm-Co permanent magnets

机译:Sm-Co永磁体中过渡金属替代的基本原理研究

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The microchemistry and magnetism of conventional and high-temperature Sm-Co permanent magnets are investigated by first-principles calculations. Particular emphasis is on the site preference for the substitution of Cu, Ti, and Zr in SmCo5 and Sm2Co17 compounds. Cu substitution is more favorable in the 1:5 phase, in agreement with experimental findings. Titanium and zirconium have positive solution energies for both the phases, with Ti(Zr) having slight preference for the 1:5 (2:17) phase. Some Zr may segregate to the phase boundaries because of its large solution energy. For Ti and Zr the dumbbell site of the 2:17 phase is preferred over the other three inequivalent cobalt sites. These results are used to discuss the observed cellular nanostructure of the high-temperature Sm-Co hard magnets with composition close to the 2:17 phase. (C) 2004 American Institute of Physics.
机译:通过第一性原理计算研究了常规高温Sm-Co永磁体的微观化学和磁性。特别强调的是在SmCo5和Sm2Co17化合物中取代Cu,Ti和Zr的位置偏好。与实验结果一致,在1:5阶段,Cu置换更有利。钛和锆对于这两个相都具有正溶液能,而Ti(Zr)对于1:5(2:17)相具有较小的偏爱。某些Zr由于其较大的固溶能而可能偏析到相界。对于Ti和Zr,比其他三个不等价的钴位点更优选2:17相的哑铃位。这些结果用于讨论高温Sm-Co硬磁体的蜂窝纳米结构,其组成接近2:17相。 (C)2004美国物理研究所。

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