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Geomaterial gradation influences on interface shear behavior.

机译:岩土材料的等级影响界面剪切行为。

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摘要

Particulate materials are ubiquitous in the natural environment and have served throughout human history as one of the basic materials for developing civilizations. In terms of human activity, the handling of particulate materials consumes approximately 10% of all the energy produced on earth. Advances in the study and understanding of particulate materials can thus be expected to have a major impact on society.;Geotechnical engineers have a long history of studying particulate materials since the fundamental building blocks of the profession include sands, silts, clays, gravels and ores, all of which are in one form or another particulates. The interface between particulates and other engineered materials is very important in determining the overall behavior of many geotechnical systems. Laboratory experimental studies into interface shear behavior has until now, been largely confined to systems involving uniformly graded sands comprised of a single particle size.;This study addresses these potential shortcomings by investigating the behavior of binary particle mixtures in contact with surfaces. The binary nature of the mixtures gives rise to a changing fabric state which in turn can affect the shear strength of the mixture. Accordingly, packing limit states and the shear strength of binary mixtures were investigated across a range of mixtures, varying in particle size ratio and the proportion of fine particles to provide a reference.;Binary mixtures in contact with smooth surfaces were investigated from both a global shear response and a contact mechanics perspective. A model was developed that allowed for the prediction of an interface friction coefficient based on fundamental material properties, particle and mixture parameters. Surface roughness changes as a result of shearing were also examined.;The interface shear behavior with rough interfaces was examined in the context of the relative roughness between particles and surface features. The interpretation of traditional measures of relative roughness suffer from the need for a definitive average particle size, which is ambiguous in the case of non-uniform mixtures. Measures of an applicable average particle size for binary mixtures were evaluated.
机译:微粒材料在自然环境中无处不在,并且在整个人类历史上一直是发展文明的基本材料之一。就人类活动而言,处理颗粒物料消耗了地球上产生的所有能源的大约10%。因此,对颗粒材料的研究和理解的进步有望对社会产生重大影响。;土木工程师研究颗粒材料的历史由来已久,因为该行业的基本组成部分包括沙子,粉砂,粘土,砾石和矿石,它们都是一种形式或另一种颗粒。颗粒与其他工程材料之间的界面对于确定许多岩土系统的整体性能非常重要。迄今为止,对界面剪切行为的实验室实验研究主要局限于涉及由单一粒度组成的均等梯度砂土的系统。该研究通过研究二元颗粒混合物与表面接触的行为来解决这些潜在的缺点。混合物的二元性质导致织物状态改变,这反过来又会影响混合物的剪切强度。因此,研究了在一定范围内的混合物的填充极限状态和二元混合物的剪切强度,改变了粒径比和细颗粒的比例以提供参考。;从整体上研究了与光滑表面接触的二元混合物剪切响应和接触力学观点。开发了一个模型,该模型允许根据基本材料属性,颗粒和混合物参数预测界面摩擦系数。还研究了由于剪切而导致的表面粗糙度变化。在粗糙颗粒和界面之间的相对粗糙度的背景下,研究了具有粗糙界面的界面剪切行为。对相对粗糙度的传统测量方法的解释受制于对确定的平均粒度的需求,这在不均匀混合物的情况下是模棱两可的。评估了适用于二元混合物的平均粒径的量度。

著录项

  • 作者

    Fuggle, Andrew Richard.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 242 p.
  • 总页数 242
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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