热处理铁钴合金的磁性能及其振动能量收集潜力

S. Yamaura, Shinya Makino, Natsuko Kimura, M. Yokoyama, T. Kubota, Y. Furuya
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引用次数: 2

摘要

研究了Fe-Co磁致伸缩合金的合金成分和热处理条件对悬臂式振动能量采集器输出电压的影响。Fe-Co二元合金经退火后再经水淬后产生的输出电压高于经冷轧或退火但不经淬火的合金产生的输出电压。退火和淬火后的Fe-Co合金具有较高的饱和磁化率、磁导率和磁致伸缩率,但残余磁化率、矫顽力和磁致伸缩率较低。因此,为了提高磁致伸缩材料发电机的输出电压,除了控制合金成分和磁致伸缩外,还需要控制其他磁性参数。
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Magnetic properties of heat-treated Fe-Co alloys and their potential for vibration energy harvesting
We studied the effects of alloy composition and heat-treatment conditions of the Fe-Co magnetostrictive alloys on the output voltage of a cantilever-type vibration energy harvester with the alloys. Fe-Co binary alloys that were annealed and subsequently water-quenched produced higher output voltages than those produced by alloys that were cold-rolled or annealed but not quenched. Annealed and quenched Fe-Co alloys possessed higher saturation magnetization, permeability, and magnetostriction susceptibility but lower residual magnetization, coercive force, and magnetostriction. Thus, we found that it was necessary to control not only the alloy composition and magnetostriction but also other magnetic parameters in order to increase the output voltage of power generator using magnetostrictive materials.
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