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Hard magnetic nanoparticles and nanocomposites

机译:硬磁纳米颗粒和纳米复合材料

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摘要

Many high performance permanent magnets are nanostructured materials. The magnetic properties of nanoparticles are discussed in terms of characteristic length scales, including the maximum monodomain size and the exchange length. Experimental results for ball milled SmCo5 nanoparticles are presented, showing deviations from idealized behavior. Because of the short exchange length, this can be understood in terms of independent nucleation of reverse domains in grains within larger particles. With a much longer exchange length, FeCo alloy nanoparticles show reduced coercivity in a high density compact, in accordance with the random anisotropy model. The SmCo5 and FeCo nanoparticles were mixed and compacted in an attempt to make an exchange spring nanocomposite. However, significant exchange between the hard and soft phases was not observed because the sample density was too low. Processing considerations for improved co-compaction of these nanoparticles are discussed.
机译:许多高性能永磁体是纳米结构材料。根据特征长度尺度,包括最大单畴尺寸和交换长度,讨论了纳米颗粒的磁性。提出了球磨SmCo5纳米颗粒的实验结果,显示出偏离理想行为的情况。由于交换长度短,这可以从较大颗粒内晶粒的反向结构域的独立成核方面来理解。根据更长的交换长度,根据随机各向异性模型,FeCo合金纳米颗粒在高密度压坯中显示出降低的矫顽力。将SmCo5和FeCo纳米颗粒混合并压实,以制造交换弹簧纳米复合材料。但是,未观察到硬相和软相之间的大量交换,因为样品密度太低。讨论了改善这些纳米颗粒的共致密化的工艺考虑。

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