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Simulation of mixture microstructures via particle packing models and their direct comparison with real mixtures.

机译:通过颗粒堆积模型模拟混合物的微观结构,并将其与真实混合物进行直接比较。

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摘要

The objective of this thesis to identify and develop techniques providing direct comparison between simulated and real packed particle mixture microstructures containing submicron-sized particles. This entailed devising techniques for simulating powder mixtures, producing real mixtures with known powder characteristics, sectioning real mixtures, interrogating mixture cross-sections, evaluating and quantifying the mixture interrogation process and for comparing interrogation results between mixtures. A drop and roll-type particle-packing model was used to generate simulations of random mixtures. The simulated mixtures were then evaluated to establish that they were not segregated and free from gross defects. A powder processing protocol was established to provide real mixtures for direct comparison and for use in evaluating the simulation. The powder processing protocol was designed to minimize differences between measured particle size distributions and the particle size distributions in the mixture. A sectioning technique was developed that was capable of producing distortion free cross-sections of fine scale particulate mixtures. Tessellation analysis was used to interrogate mixture cross sections and statistical quality control charts were used to evaluate different types of tessellation analysis and to establish the importance of differences between simulated and real mixtures. The particle-packing program generated crescent shaped pores below large particles but realistic looking mixture microstructures otherwise. Focused ion beam milling was the only technique capable of sectioning particle compacts in a manner suitable for stereological analysis. Johnson-Mehl and Voronoi tessellation of the same cross-sections produced tessellation tiles with different the-area populations. Control charts analysis showed Johnson-Mehl tessellation measurements are superior to Voronoi tessellation measurements for detecting variations in mixture microstructure, such as altered particle-size distributions or mixture composition. Control charts based on tessellation measurements were used for direct, quantitative comparisons between real and simulated mixtures. Four sets of simulated and real mixtures were examined. Data from real mixture was matched with simulated data when the samples were well mixed and the particle size distributions and volume fractions of the components were identical. Analysis of mixture components that occupied less than approximately 10 vol% of the mixture was not practical unless the particle size of the component was extremely small and excellent quality high-resolution compositional micrographs of the real sample are available. These methods of analysis should allow future researchers to systematically evaluate and predict the impact and importance of variables such as component volume fraction and component particle size distribution as they pertain to the uniformity of powder mixture microstructures.
机译:本文的目的是确定和开发技术,以提供包含亚微米级颗粒的模拟和真实填充颗粒混合物微观结构之间的直接比较。这需要设计技术来模拟粉末混合物,生产具有已知粉末特性的真实混合物,对真实混合物进行切片,询问混合物横截面,评估和量化混合物询问过程以及比较混合物之间的询问结果。跌落式颗粒堆积模型用于生成随机混合物的模拟。然后对模拟混合物进行评估,以确保它们没有分离并且没有严重缺陷。建立了粉末处理方案以提供真正的混合物,以进行直接比较并用于评估模拟。粉末加工方案的设计可最大程度地减少混合物中测得的粒度分布与粒度分布之间的差异。开发了一种切片技术,该技术能够产生细颗粒混合物的无畸变横截面。细分分析用于询问混合物的横截面,统计质量控制图用于评估不同类型的细分分析,并确定模拟混合物与真实混合物之间差异的重要性。粒子填充程序在大粒子下方生成了新月形的孔,但在其他方面却看起来很逼真的混合物微结构。聚焦离子束铣削是唯一能够以适合于体视分析的方式对粉粒进行切片的技术。相同横截面的Johnson-Mehl和Voronoi镶嵌细分产生了具有不同面积人口的镶嵌细分。控制图分析表明,Johnson-Mehl镶嵌细分化的测量结果优于Voronoi镶嵌细分化的测量结果,可检测混合物微观结构的变化,例如改变的粒度分布或混合物组成。基于镶嵌细分测量的控制图用于真实和模拟混合物之间的直接,定量比较。检查了四组模拟和真实混合物。当样品充分混合并且组分的粒径分布和体积分数相同时,来自真实混合物的数据与模拟数据匹配。除非混合物的颗粒尺寸非常小,并且无法获得真实样品的高质量高分辨率组成显微照片,否则分析占混合物不到10%(体积)的混合物组分是不切实际的。这些分析方法应使未来的研究人员能够系统地评估和预测变量的影响和重要性,这些变量与粉末混合物微结构的均匀性有关,例如组分的体积分数和组分的粒度分布。

著录项

  • 作者

    Gulliver, Eric A.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 295 p.
  • 总页数 295
  • 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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