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Structural and Magnetic Characterization of High Performance Die-Upset Forged Nd-Fe-B Magnets

机译:高性能模锻Nd-Fe-B磁体的结构和磁特性

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摘要

The processing method of anisotropic Nd-Fe-B magnets, based on rapid solidification of a molten alloy, followed by hot pressing and die-upset forging is currently well established and commonly used for the processing of high performance magnets. In this method uniaxial stress, created in an isotropic, polycrystalline alloy, leads to texture formation with the crystallographic c axis, of the tetragonal structure in each grain, being parallel, to the deformation direction (DD). However, the mechanisms leading to the anisotropic structure and accompanying processes are still not fully understood. In this study the Fe73.7Nd13.6Co6.6Ga0.6B5.5 alloy, after rapid solidification by melt spinning and hot pressing was subjected to die-upset forging with strains 30% and 65%, respectively. Systematic studies of the structure, microstructure and magnetic domain structure versus processing parameters were performed for this alloy, using magnetic measurements, transmission electron microscopy and atomic force microscopy.
机译:基于熔融合金的快速凝固,然后进行热压和模锻的锻造,各向异性Nd-Fe-B磁体的加工方法是目前公认的,并且通常用于高性能磁体的加工。在这种方法中,在各向同性的多晶合金中产生的单轴应力导致每个晶粒中四方结构的晶体c轴平行于变形方向(DD)的晶体c轴织构化。然而,导致各向异性结构和伴随过程的机理仍未完全理解。在这项研究中,Fe73.7Nd13.6Co6.6Ga0.6B5.5合金在通过熔体纺丝和热压快速凝固之后,分别经受应变为30%和65%的模锻锻造。使用磁测量,透射电子显微镜和原子力显微镜对这种合金进行了结构,微观结构和磁畴结构与加工参数的系统研究。

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