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Interparticle interactions and the switching field distribution of barium ferrite media

机译:钡铁氧体颗粒间的相互作用和开关场分布

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A series of barium ferrite disks with a variation in volumetric packing density from 1.5% to 35% were investigated to determine the effect of interparticle interactions on the switching field distribution (SFD) of the media. Kelly et al. (1989) introduced a parameter Delta M(H) to highlight deviations from the theoretical non-interacting assembly. The degree of interparticle interactions were determined from the principal remanence curves and the subsequent calculation of the Delta M(H) parameter. It was found that the SFD of these disks became narrower as the volumetric packing density increased, and that the SFD width strongly correlated with the strength of the interparticle interactions as measured from the Delta M(H) plot. Examination of scanning electron micrographs of these disks revealed that for the low-packing-density disks, separation between the stacks of particles was large and that the separation decreased as the volumetric packing density was increased. It is believed that the properties of the media result not only from the large interparticle interaction arising from particle stacking, but also from the interaction between the stacks.
机译:研究了一系列体积填充密度从1.5%到35%变化的钡铁氧体圆盘,以确定颗粒间相互作用对介质转换场分布(SFD)的影响。凯利等。 (1989)引入了一个参数Delta M(H)来突出与理论上非相互作用组件的偏差。颗粒间相互作用的程度由主要剩磁曲线和随后的Delta M(H)参数计算确定。发现随着体积堆积密度的增加,这些圆盘的SFD变窄,并且从Delta M(H)图测得,SFD宽度与粒子间相互作用的强度密切相关。这些盘的扫描电子显微照片的检查表明,对于低堆积密度的盘,颗粒堆叠之间的间隔大,并且随着体积堆积密度的增加,间隔减小。据信,介质的性质不仅是由于颗粒堆积而引起的大的颗粒间相互作用,而且是由于堆积之间的相互作用。

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