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Studies of the magnetic properties and microstructures of two rare earth-transition metal type magnetic alloys

机译:两种稀土 - 过渡金属型磁性合金的磁性能和微观结构研究

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摘要

An investigation into the optimisation of magnetic properties of two types of magnetic alloys based on Sm(Co,Cu,Fe,Zr)(_z) (z = 7.4) and Nd(_{15})Fe(_{77})B(_8) has been carried out. The optimum heat treatment which gave the best magnetic properties for the Sm(Co,Cu,Fe,Zr)(_z) alloy depended primarily on the sintering and solid solution temperatures. After quenching the alloy from the solid solution temperature, and then ageing isothermally, it was found that the intrinsic coercivity, microhardness and electrical resistance changed with ageing time, and the ageing temperature also affected the rate of these changes. The magnetic properties of specimens produced from the Nd-Fe-B type alloy were also shown to be affected by different heat treatments. The microhardness, microstructure and intrinsic coercivity were affected by an isothermal ageing treatment and the temperature of the treatment. Two routes were used for powder preparation 1n the production of the sintered specimens: i. Mechanical ball milling of crushed ingot material. ii. Hydrogenation followed by ball milling. It was found that higher energy products were achieved in the ball milled material for the two alloys investigated. Two reasons for this were proposed: i. The hydrogenated and ball milled powder had a larger size than the ball milled only powder. ii. The surfaces of the hydrogenated powder were highly reactive in air and some oxidation of the surfaces occurred. Optical and electron microscope studies showed that the variations in the ageing behaviour of both the alloys was concurrent with subtle differences in the microstructure between the samples aged at different isothermal ageing temperatures.
机译:基于Sm(Co,Cu,Fe,Zr)(_ z )(z = 7.4)和Nd (_ {15} )Fe (_的两种磁性合金的磁性能优化研究{77} )B (_ 8 )已执行。为Sm(Co,Cu,Fe,Zr)(_ z )合金提供最佳磁性能的最佳热处理主要取决于烧结和固溶温度。从固溶体温度淬火后,等温时效,发现固有矫顽力,显微硬度和电阻随时效时间而变化,时效温度也影响这些变化的速率。还显示了由Nd-Fe-B型合金制成的试样的磁性能会受到不同热处理的影响。显微硬度,显微组织和固有矫顽力受等温时效处理和处理温度的影响。在烧结样品的生产中,有两种方法用于粉末制备:i。机械球磨碎的锭料。 ii。氢化后进行球磨。发现在所研究的两种合金的球磨材料中获得了更高的能量产物。提出了两个原因:氢化和球磨的粉末具有比仅球磨的粉末更大的尺寸。 ii。氢化粉末的表面在空气中具有高反应性,并且发生了表面的一些氧化。光学和电子显微镜研究表明,两种合金的时效行为变化与在不同等温时效温度下时效的样品之间的微观结构存在细微差异。

著录项

  • 作者

    Bailey Tony;

  • 作者单位
  • 年度 1985
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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