矫顽力
四方晶系
磁铁
能量(信号处理)
材料科学
各向异性
相(物质)
产品(数学)
凝聚态物理
领域(数学)
物理
拓扑(电路)
光学
几何学
电气工程
量子力学
数学
工程类
纯数学
作者
Alexander Kovacs,Johann Fischbacher,Harald Oezelt,T. Schrefl,Andreas Kaidatzis,Ruslan Salikhov,Michael Farle,G. Giannopoulos,D. Niarchos
标识
DOI:10.1109/tmag.2017.2701418
摘要
In this work we investigate the potential of tetragonal L1$_0$ ordered FeNi as candidate phase for rare earth free permanent magnets taking into account anisotropy values from recently synthesized, partially ordered FeNi thin films. In particular, we estimate the maximum energy product ($BH$)$_\mathrm{max}$ of L1$_0$-FeNi nanostructures using micromagnetic simulations. The maximum energy product is limited due to the small coercive field of partially ordered L1$_0$-FeNi. Nano-structured magnets consisting of 128 equi-axed, platelet-like and columnar-shaped grains show a theoretical maximum energy product of 228 kJ/m$^3$, 208 kJ/m$^3$, 252 kJ/m$^3$, respectively.
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