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The coercivity mechanisms in Sm(CoFeCuZr)z nanocrystalline magnets: Nucleation x Pinning

机译:Sm(CoFeCuZr)z纳米晶磁体中的矫顽力机制:成核x钉扎

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摘要

It is discussed the difference between the magnetic reversal mechanisms: ⅰ) coherent rotation, ⅱ) nucleation, ⅲ) unpinning of domain walls. The main argument to suggest pinning as the coercivity mechanism of Sm(CoFeCuZr)z magnets is the low initial susceptibility of magnetization curves of thermally demagnetized magnets. However, coherent rotation also implies in low initial susceptibility, since the grain size of the magnets is near the single domain particle size. It is unlikely that pinning could be the coercivity mechanism in this case, since the anisotropy field of Sm_2Co_(17) phase is 65 kOe, whereas the coercivity of magnets can be higher than 40 kOe. Such coercive field of 60% of the anisotropy field indicates coherent rotation as mechanism. A model for describing the abnormal coercivity behavior in Sm(CoFeCuZr)z magnets is proposed.
机译:讨论了磁反转机理之间的区别:ⅰ)相干旋转,)成核,ⅲ)畴壁的脱钉。建议将钉扎作为Sm(CoFeCuZr)z磁体的矫顽力机理的主要论点是热退磁磁体的磁化曲线的初始磁化率低。然而,相干旋转还意味着较低的初始磁化率,因为磁体的晶粒尺寸接近单畴粒径。由于Sm_2Co_(17)相的各向异性场为65 kOe,而磁体的矫顽力可以高于40 kOe,因此在这种情况下,钉扎不可能成为矫顽力机制。这种各向异性场的60%的矫顽场表明相干旋转是机制。提出了一种描述Sm(CoFeCuZr)z磁体异常矫顽行为的模型。

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