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Dynamic coercivity of Mo-doped FINEMETs

机译:掺杂Mo的FINEMETs的动态矫顽力

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摘要

The structure and the dc magnetic behavior of FINEMET-type alloys doped with molybdenum have been recently reported. Most commercial applications of these materials are, however, not at dc but at high magnetizing frequencies. Therefore, we report a study of the frequency dependence of coercivity, H c(f), in amorphous and nanocrystalline ribbons of composition Fe _(73.5)Si_(13.5)Nb_(3-x)Mo_xB _9Cu_1 (x=0, 1.5 and 3) in the frequency range from 0.5 to 1.3 kHz. The nature of H_c(f) measurements revealed the influence of eddy currents in the magnetization of samples. The frequency dependence of coercivity did not vary with the molybdenum content in the amorphous samples. All the alloys exhibited a systematic improvement in the coercivity after nanocrystallization and it was found that this improvement was better as more Nb was replaced by Mo.
机译:最近已经报道了掺有钼的FINEMET型合金的结构和直流磁行为。但是,这些材料的大多数商业应用不是直流电,而是高励磁频率。因此,我们报告了对组成为Fe _(73.5)Si_(13.5)Nb_(3-x)Mo_xB _9Cu_1(x = 0、1.5和1.5)的非晶态和纳米晶带中矫顽力H c(f)的频率依赖性的研究。 3)在0.5到1.3 kHz的频率范围内。 H_c(f)测量的性质揭示了涡流对样品磁化的影响。矫顽力的频率依赖性没有随非晶态样品中钼含量的变化而变化。纳米结晶后,所有合金均显示出矫顽力的系统性改善,并且发现随着更多的Nb被Mo替代,这种改善会更好。

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