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Investigations on Barium Ferrite Magnets

机译:钡铁氧体磁体的研究

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Barium ferrite (BaO:6Fe2O3) has been investigated magnetically to test the predictions of fine particle theory in the region of grain sizes larger than the critical one for which no satisfactory theory exists as yet. Grain size and coercive force of polycrystalline magnets (nonoriented and crystal oriented) were closely related to sintering temperatures. A comparison of theoretical and observed temperature dependence of coercive force is made and shows a close fit when certain reasonable assumptions are made. Susceptibilities showed values attributed to rotation of the magnetization vector for samples of high coercive force only (4000 oe), while wall movements contribute more or less to the susceptibility of all other samples. Domain patterns show wall movements in applied fields on samples with particle thickness down to 10×10-4 cm. Patterns on grains below 5×10-4 cm thickness (IHC more than 2000 oe) indicate reversals of magnetization by the rotation process. On magnets of the transition particle size both processes can be observed side by side, the walls being less movable for higher coercive forces.
机译:已经对磁性钡铁氧体(BaO:6Fe2O3)进行了磁性研究,以测试晶粒尺寸大于临界值(目前尚无令人满意的理论)的区域中的细颗粒理论的预测。多晶磁体(非取向和晶体取向)的晶粒尺寸和矫顽力与烧结温度密切相关。对矫顽力的理论和观察到的温度依赖性进行了比较,并在做出某些合理假设时显示出非常合适的结果。磁化率显示的值仅归因于高矫顽力(4000 oe)样品的磁化矢量旋转,而壁运动或多或少地影响了所有其他样品的磁化率。畴模式显示了在壁厚小于10×10-4 cm的样品上施加电场时壁的运动。厚度小于5×10-4 cm(IHC大于2000 oe)的晶粒上的图案表示旋转过程会逆转磁化强度。在具有过渡粒径的磁体上,可以同时观察到两个过程,而壁对于较高的矫顽力来说移动性较小。

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    《Journal of Applied Physics 》 |1956年第9期| 共7页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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