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Auger spectroscopy of rare earth-transition metal-boron magnets in relation to the mechanism of coercivity

机译:稀土过渡金属硼磁体的俄歇能谱与矫顽力机理的关系

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Magnets of composition Nd/sub 15/Fe/sub 78/B/sub 7/ were examined by SEM (scanning electron microscopy) and Auger spectroscopy. The sample was fractured in the ultra-high-vacuum chamber of the spectrometer, and examination of the fracture surfaces provided information which is taken to be representative of the internal structure and composition of Nd-Fe-B magnets. The grains were found to be coated with an Nd-rich film that was presumably generated by the high reactivity between oxygen and Nd. The technique provided information as to the changes occurring during postsintering. The two main effects are reduction in grain size by about a factor of two and the development of a more homogeneous (Nd-rich) film. Prior to postsintering, a small amount of Nd was observed on the grain surface. Afterward, the Nd content had risen sharply (a factor of three or more). The results are used to provide fresh insight into the mechanism of coercivity. The Nd-rich film is thought to be a magnetic dead layer which insulates the particles and makes the system behave as an assemblage of weakly interacting fine particles. Nucleation, which is a rare event, is isolated by the dead layer in the grain of origin, giving rise to the large observed coercivity.
机译:通过SEM(扫描电子显微镜)和俄歇光谱法检查了组成为Nd / sub 15 / Fe / sub 78 / B / sub 7 /的磁体。样品在光谱仪的超高真空室中断裂,并且对断裂表面的检查提供了信息,该信息被视为代表Nd-Fe-B磁体的内部结构和组成。发现晶粒上覆盖有富含Nd的薄膜,这大概是由于氧与Nd之间的高反应性所产生的。该技术提供了有关在后烧结过程中发生的变化的信息。两个主要作用是将晶粒尺寸减小约两倍,并开发出更均匀的(富钕)薄膜。在后烧结之前,在晶粒表面观察到少量的Nd。之后,Nd含量急剧上升(三倍或更多)。结果用于提供对矫顽力机制的新见解。富含Nd的薄膜被认为是磁性死层,该死层使粒子绝缘并使系统表现为微弱相互作用的微粒的集合体。成核是一种罕见的事件,被原始晶粒中的死层隔离,从而产生了较大的观察到的矫顽力。

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