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Microstructural and magnetic characterization in soft magnetic iron-silicon-aluminum (Sendust) alloy.

机译:软磁性铁-硅-铝(Sendust)合金的显微组织和磁性表征。

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摘要

Microstructure and its effect on magnetic domain structure and domain wall motion has been studied to understand the role of microstructure in determining the magnetic properties of a soft magnetic Sendust alloy. Electron microscopy of dark field imaging utilizing superlattice reflections has been mainly used to investigate the ordering behavior and corresponding microstructural changes, and Lorentz electron microscopy allowed the effect of microstructure on magnetic domain structure and wall motion to be observed. Antiphase boundaries (APBs) and other imperfections have been shown clearly and simultaneously with the observation of magnetic domain walls, even with the objective lens off.;The magnetic domain structures of the alloy in the remanent state after saturation revealed closure domains at the edge of the specimen and at cracks. Closure domains were also observed at grain boundaries, inclusions and holes. From in-situ studies of domain wall motion it was shown that the interactions of domain walls with individual dislocations and APBs are not sufficiently strong to be observed, as domain walls passed straight across them. However, grain boundaries act as strong pinning sites for domain walls, and closure domains formed at holes leading to a retardation of the domain wall motion.;Grain boundaries are shown to be the most detrimental structural defects for soft magnetic applications of the Sendust alloy. Therefore, they should preferably be removed by suitable heat treatment. For this purpose, it might be desirable to anneal the material in the single phase region to facilitate large grains but to avoid any interfacial dislocations which would be formed at interphase interfaces in the two phase field. The presence of inclusions and holes is also likely to be undesirable for soft magnetic applications of the Sendust alloy. Suggestions for improving Sendust for recording heads are therefore to have clean, non-porous alloys of very large grain size, preferable single crystal. (Abstract shortened with permission of author.)
机译:已经研究了微结构及其对磁畴结构和畴壁运动的影响,以了解微结构在确定软磁性铁硅铝合金的磁性能中的作用。利用超晶格反射的暗场成像电子显微镜主要用于研究有序行为和相应的微观结构变化,洛伦兹电子显微镜允许观察微观结构对磁畴结构和壁运动的影响。在观察磁畴壁时,即使关闭物镜也能清楚地同时显示出反相边界(APBs)和其他缺陷。饱和后处于剩余状态的合金的磁畴结构揭示了在边缘处的闭合畴标本和裂缝。在晶粒边界,夹杂物和孔洞处也观察到了封闭区域。从畴壁运动的原位研究表明,畴壁与单个位错和APB的相互作用不够强,无法观察到,因为畴壁直接穿过它们。然而,晶界是畴壁的牢固钉扎点,并且在孔处形成了封闭畴,导致畴壁运动的延迟。晶界被认为是铁硅铝合金软磁应用中最有害的结构缺陷。因此,它们最好应通过适当的热处理除去。为此目的,可能希望在单相区域中对材料进行退火以促进大晶粒,但避免在两相场中的相间界面处形成的任何界面错位。对于Sendust合金的软磁应用,夹杂物和空穴的存在也可能是不希望的。因此,改善记录头的铁硅铝的建议是使用具有很大晶粒尺寸的清洁的无孔合金,最好是单晶。 (摘要经作者许可缩短。)

著录项

  • 作者

    Kim, June Dong.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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