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THE PRESSURE DEPENDENCE OF ELASTIC STIFFNESS OF GRANULAR MATERIALS: A BINARY MODEL IN EFFECTIVE MEDIUM THEORY

机译:粒状材料弹性刚度的压力依赖性:有效介质理论中的二元模型

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摘要

Granular media have many interesting and unusual properties,different from those of either solids or liquids. The study of sound propagation and nonlinear elasticity in unconsolidated granular matter is an interest topic.In the simplest experiments,a packing of spherical glass beads is confined under hydrostatic conditions and the compression and shear sound speeds Vp and Vs are measured as functions of static confining pressure P.Experimentally it is exhibit that the bulk,modulus K and shear modulus G of a granular assembly of elastic spheres increase with pressure p faster than the Pv3. This result is law predicted by effective medium theory (EMT) based on Hertz-Mindlin contact forces. To understand the origin of these discrepancies,we treating contact stiffness as a variable,extend the effective medium approximation used to obtain elastic stiffness of a random pack of spherical grains.More specifically,we show that EMT can describe the moduli pressure dependence if introducing a binary model for grain contacts and a parameter ft,which represents the amount of non-slipping contacts in the mixture. The simple extension of the theory provides a better fit for mamy laboratory test result.
机译:粒状介质具有许多有趣和不同寻常的特性,不同于固体或液体。研究未固结颗粒中的声传播和非线性弹性是一个有趣的话题。在最简单的实验中,将球形玻璃珠的填充物在静水条件下进行约束,并测量压缩和剪切声速Vp和Vs作为静态约束的函数实验表明,弹性球粒状组件的体积,模量K和剪切模量G随压力p的增加快于Pv3。该结果是有效介质理论(EMT)基于Hertz-Mindlin接触力预测的定律。为了理解这些差异的根源,我们将接触刚度作为变量,扩展了有效的介质近似值,该有效介质近似值用于获得随机填充的球形晶粒的弹性刚度。更具体地,我们证明,如果引入弹性模量,EMT可以描述模压依赖性。谷物接触的二进制模型和参数ft,代表混合物中防滑接触的数量。该理论的简单扩展为妈妈的实验室测试结果提供了更好的选择。

著录项

  • 来源
  • 会议地点 Shanghai(CN)
  • 作者

    W.Zheng; S.L.Xu; S.S.Hu;

  • 作者单位

    Department of modern mechanics, CAS Key Laboratory Mechanical Behavior and Design of Materials,University of Science and Technology of China,Hefei,Anhui 230026,China;

    Department of modern mechanics, CAS Key Laboratory Mechanical Behavior and Design of Materials,University of Science and Technology of China,Hefei,Anhui 230026,China;

    Department of modern mechanics, CAS Key Laboratory Mechanical Behavior and Design of Materials,University of Science and Technology of China,Hefei,Anhui 230026,China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料力学(材料强弱学);
  • 关键词

    Granular media; Effective medium theory (EMT); Nonlinear elasticity;

    机译:颗粒介质;有效介质理论;非线性弹性;

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