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Viscosity effects on the flow and fracture of metallic glasses and other viscous materials.

机译:粘度对金属玻璃和其他粘性材料的流动和断裂产生影响。

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摘要

The purpose of this study was to further understand the effects of changes in viscosity on the flow and fracture of metallic glasses. The viscosity of metallic glasses under various testing conditions were measured via three types of experiments. Estimates of global sample viscosity were made from tensile test data at temperatures from room temperature to above the glass transition temperature for several metallic glasses at strain rates ranging from 10-1 to 10-3 s-1 . Dynamic mechanical analysis (DMA) was used to investigate effects of temperature, frequency, pre-annealing, pre-straining, and sample orientation on global sample complex viscosity. Instrumented tensile tests were conducted to measure the local viscosity within shear bands. The global viscosity measurements from DMA and tensile test estimates showed good agreement. The local viscosity within a shear band was found to be several orders of magnitude lower than the global viscosities.;Mechanical tests including microhardness, nanoindentation, bending over a mandrel, and tensile tests were conducted on Mg85Cu 10Ca5 metallic glass ribbons, as well as observations of fracture surface features. High pressure shear experiments were conducted on a number of metallic glass ribbons to investigate the effects of superimposed pressure on flow of metallic glasses. It was found that superimposed pressure does not significantly affect the flow of the metallic glass ribbons tested. Model experiments on viscous materials were performed to mimic flow and fracture in metallic glasses. It was found that the viscosity and toughness of model experiments as plotted against the fracture surface feature sizes showed similar behavior to the same parameters in metallic glasses. Model experiments conducted on viscous materials and those conducted on metallic glasses were mathematically modeled. It was found that the viscous materials were well described by the model, but that the model did not well describe higher toughness (i.e. >20 MPa m ) metallic glasses. This was attributed to the lack of a shear band thickness parameter in the mathematical model and to multiple shear banding and crack tip blunting in tough metallic glasses.
机译:这项研究的目的是进一步了解粘度变化对金属玻璃流动和断裂的影响。通过三种类型的实验测量金属玻璃在各种测试条件下的粘度。根据在室温至高于玻璃化转变温度的温度下的拉伸测试数据,对几种金属玻璃在10-1至10-3 s-1的应变速率下的拉伸试验数据进行了总体样品粘度的估算。动态力学分析(DMA)用于研究温度,频率,预退火,预应变和样品取向对整体样品复数粘度的影响。进行了仪器化的拉伸测试以测量剪切带内的局部粘度。 DMA的整体粘度测量结果和拉伸试验估计值显示出良好的一致性。发现剪切带内的局部粘度比整体粘度低几个数量级;对Mg85Cu 10Ca5金属玻璃带进行了包括显微硬度,纳米压痕,心轴弯曲和拉伸试验在内的机械测试以及观察断裂表面特征。在许多金属玻璃带上进行了高压剪切实验,以研究叠加压力对金属玻璃流动的影响。已经发现,叠加的压力不会显着影响所测试的金属玻璃带的流动。进行了粘性材料的模型实验,以模拟金属玻璃中的流动和断裂。已发现,针对断裂表面特征尺寸绘制的模型实验的粘度和韧性显示出与金属玻璃中相同参数相似的行为。对在粘性材料上进行的模型实验和在金属玻璃上进行的模型实验进行了数学建模。发现该模型很好地描述了粘性材料,但是该模型没有很好地描述较高的韧性(即> 20MPa m)的金属玻璃。这归因于数学模型中缺乏剪切带厚度参数,以及坚韧金属玻璃中的多个剪切带和裂纹尖端钝化。

著录项

  • 作者

    Deibler, Lisa Anne.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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