论文标题
由软磁性Fe-Si-B-P-Cu合金中结晶控制的磁化
Magnetization controlled by crystallization in soft magnetic Fe-Si-B-P-Cu alloys
论文作者
论文摘要
软磁性材料具有低强制场和高渗透性。最近,自从纳米晶合金具有少量的纳米晶合金以来,使用退火无定形合金获得的纳米晶合金引起了极大的兴趣,其少量的纳米尺寸数十亿纳米表现出与无定形合金相当的低强制田。由于纳米晶体软磁性材料通过控制晶粒尺寸获得了显着的软磁性特性,因此晶粒的微观结构对软磁性特性具有很大的影响。在这项研究中,我们检查了通过退火非晶合金获得的Fe-Si-B-P-Cu纳米晶体软磁合金的磁性。在结晶过程中,观察结果揭示了生成的微观结构与软磁性能之间的相关性。
Soft magnetic materials have low coercive fields and high permeability. Recently, nanocrystalline alloys obtained using annealing amorphous alloys have attracted much interest since nanocrystalline alloys with small grain sizes of tens of nanometers exhibit low coercive fields comparable to that of amorphous alloys. Since nanocrystalline soft magnetic materials attain remarkable soft magnetic properties by controlling the grain size, the crystal grains' microstructure has a substantial influence on the soft magnetic properties. In this research, we examined the magnetic properties of Fe-Si-B-P-Cu nanocrystalline soft magnetic alloys obtained by annealing amorphous alloys. During crystallization, the observation findings reveal the correlation between the generated microstructures and soft magnetic properties.