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Combinatorial investigation of magnetostrictive materials.

机译:磁致伸缩材料的组合研究。

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摘要

Combinatorial materials synthesis is a research methodology, which allows one to study a large number of compositionally varying samples simultaneously. We apply this technique in the search for novel multifunctional materials. The work presented here will discuss the combinatorial investigation of novel magnetostrictive materials.;In particular, binary Fe-Ga and the ternary Fe-Ga-Al, Fe-Ga-Pd systems are studied. Magnetron co-sputtered composition spread samples of the alloys have been fabricated to study composition dependent trends in magnetostriction. Magnetostriction measurements on all systems studied here have been carried out by optically measuring the deflection of micro-machined cantilever arrays.;Measurements of the magnetostriction on binary Fe-Ga thin-films show similar compositional trends as had been reported in bulk systems. The maximum value of magnetostriction observed is 220 ppm, which is comparable to bulk values.;A previously unreported minor maximum in magnetostriction as a function of composition has been found for Ga contents of about 4 at%. It is believed that the origin of this minor maximum is related to a peak in the magnetic moment of Fe atoms in Fe-Ga alloys at this composition.;We have mapped the Fe-Ga-Pd and Fe-Ga-Al ternary systems. Large regions of the phase diagrams have been mapped out in a single experiment, and the observed magnetostrictive dependence on Ga content matches trends seen in bulk. It was found that the trend of magnetostriction deviated from that of bulk with the inclusion of as little as 1 at% Pd. The addition of up to 10 at % Al to Fe70Ga30 was possible without severe degradation of its magnetostriction.
机译:组合材料合成是一种研究方法,它使人们可以同时研究大量成分不同的样品。我们将这种技术应用于寻找新型多功能材料。本文介绍的工作将讨论新型磁致伸缩材料的组合研究。特别是,研究了二元Fe-Ga和三元Fe-Ga-Al,Fe-Ga-Pd系统。制备了磁控共溅射合金的成分扩散样品,以研究磁致伸缩中成分相关的趋势。在这里研究的所有系统的磁致伸缩测量都是通过光学测量微机械悬臂阵列的偏转来进行的;二元Fe-Ga薄膜磁致伸缩的测量显示出与大体积系统中报道的相似的成分趋势。观察到的磁致伸缩的最大值为220 ppm,与体积值相当。先前发现,关于Ga含量约为4 at%的磁致伸缩随组成变化的次要最大值已经发现。据信,该次要最大值的起源与在该组成下的Fe-Ga合金中Fe原子的磁矩的峰值有关。我们已经绘制了Fe-Ga-Pd和Fe-Ga-Al三元系。在单个实验中已绘制出相图的较大区域,并且观察到的对Ga含量的磁致伸缩依赖性与整体上看到的趋势相匹配。结果发现,仅含有1at%的Pd,磁致伸缩的趋势就不同于体磁的趋势。可以在不严重降低其磁致伸缩的情况下向Fe70Ga30中添加多达10 at%的Al。

著录项

  • 作者

    Hattrick-Simpers, Jason R.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Physics Condensed Matter.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 162 p.
  • 总页数 162
  • 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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