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Shock compaction and impact response of thermite powder mixtures .

机译:铝热粉末混合物的冲击压缩和冲击响应。

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摘要

This dissertation focuses on developing a predictive method for determining the dynamic densification behavior of thermite powder mixtures consisting of equivolumetric mixtures of Ta + Fe2O3 and Ta + Bi 2O3. Of primary importance to these highly reactive powder mixtures is the ability to characterize the stress at which full compaction occurs, the crush strength, which can significantly influence the stress required to initiate reaction during dynamic or impact loading. Examined specifically are the quasi-static and dynamic compaction responses of these mixtures. Experimentally obtained compaction responses in the quasi-static regime are analyzed using available compaction models, and an analysis technique is developed that allows for a correct measurement of the apparent yield strength of the powder mixtures. The correctly determined apparent yield strength is combined with an equation of state to yield a prediction of the shock densification response, including the dynamic crush strength of the thermite powder mixtures. The validated approach is also extended to the Al + Fe2O3 thermite system. It is found that accurate predictions of the crush strength can be obtained through determination of the apparent yield strength of the powder mixture when incorporated into the equation of state. It is observed that the predictive ability in the incomplete compaction region is configurationally dependent for highly heterogeneous thermite powder systems, which is in turn influenced by particle morphology and differences in intrinsic properties of constituents (density, strength, etc.).
机译:本文致力于开发一种预测方法,用于确定由Ta + Fe2O3和Ta + Bi 2O3等体积混合物组成的铝热粉末混合物的动态致密化行为。这些高反应性粉末混合物的最重要的特征是能够表征发生完全压实的应力,压碎强度的能力,该压碎强度会显着影响动态载荷或冲击载荷期间引发反应所需的应力。专门检查了这些混合物的准静态和动态压实响应。使用可用的压实模型分析准静态状态下的实验压实响应,并开发了一种分析技术,可以正确测量粉末混合物的表观屈服强度。正确确定的表观屈服强度与状态方程相结合,可以预测冲击致密化响应,包括铝铁矿粉末混合物的动态抗压强度。经验证的方法还扩展到了Al + Fe2O3铝热体系。已经发现,通过将粉末混合物掺入到状态方程中,可以确定粉末混合物的表观屈服强度,从而可以准确地预测压碎强度。可以观察到,对于高度异质的铝热粉体系,不完全压实区域的预测能力在结构上是依赖的,这反过来又受颗粒形态和成分固有性质(密度,强度等)差异的影响。

著录项

  • 作者

    Fredenburg, David Anthony.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 318 p.
  • 总页数 318
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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