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Medium range order in aluminum-based metallic glasses.

机译:铝基金属玻璃的中等订购量。

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摘要

Medium range order (MRO) is the structure order existing between the short range order and long range order in amorphous materials. Fluctuation electron microscopy (FEM) is an effective method to quantify MRO. The FEM signal depends on several effects. In this thesis, I will show how the probe coherence, sample thickness and energy filter affect the FEM signal.;We have found that microalloying in Al-based glass has dramatic effect on the primary crystallization temperature and nanocrystal density after annealing treatment. FEM alone cannot uncover the details of MRO in these alloys. Therefore, I resort to modeling to solve the relationship between the variance signal and MRO structure. I improved Stratton and Voyles's analytical model. I also did computer simulation. I explored the effects of thermal disorder and hydrostatic strain on the variance. The extracted size d and volume fraction phi in Al88Y7Fe5, Al88Y6Fe 5Cu1 and Al87Y7Fe5Cu 1 as-spun samples reveals the relationship between MRO in as-quenched sample and thermal behaviors in these alloys.;I also did FEM experiments in relaxed Al88Y7Fe 5 samples at various annealing times. MRO structure in these samples does not change.;FEM was also done on Al87Y7Fe5Cu 1 to check MRO variation during transient nucleation period. The extracted (d, phi) based on combination of experimental data and simulation shows how MRO changes during this period.
机译:中程级(MRO)是非晶材料中短程级和长程级之间的结构顺序。波动电子显微镜(FEM)是定量MRO的有效方法。 FEM信号取决于多种影响。在本文中,我将展示探针的相干性,样品厚度和能量滤波器如何影响FEM信号。;我们发现,铝基玻璃中的微合金化对退火处理后的初晶温度和纳米晶密度具有显着影响。单独的有限元分析无法揭示这些合金中MRO的细节。因此,我求助于建模以解决方差信号与MRO结构之间的关系。我改进了Stratton和Voyles的分析模型。我也做了计算机仿真。我探讨了热失调和静水应变对方差的影响。 Al88Y7Fe5,Al88Y6Fe 5Cu1和Al87Y7Fe5Cu 1初生样品的提取尺寸d和体积分数phi揭示了淬火样品中的MRO与这些合金的热行为之间的关系。退火时间。这些样品中的MRO结构没有改变。;还对Al87Y7Fe5Cu 1进行了有限元分析,以检查瞬态成核过程中MRO的变化。基于实验数据和模拟的组合所提取的(d,phi)显示了在此期间MRO的变化。

著录项

  • 作者

    Yi, Feng.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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