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Macroscopic modelling of structured materials: relationship between orthotropic Cosserat continuum and rigid elements

机译:结构材料的宏观建模:正交各向异性Cosserat连续体和刚性元素之间的关系

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摘要

The macroscopic modelling of in-plane elastic behaviour of composite solids made with regular orthotropic texture is the object of the present study. At the macro-scale, the effect of heterogeneity can be included by adopting an homogenisation toward a generalised continuum on which specific finite element codes are based. As an alternative, a specific rigid element approach has been recently proposed (Casolo, 2004) based on a discrete mechanistic formulation. This paper presents a sequel of such research, and expounds the theoretical relationship between the orthotropic Cosserat continuum and the proposed rigid elements. Then, referring to two different masonry-like textures, the constitutive parameters of the corresponding Cosserat continuum and of the rigid element model are calculated. Numerical analyses compare their performance, and display the impact of the composite texture in the case of a concentrated load. The capability to discern the behaviour of different structured materials at the macro-scale is pointed out by observing how the local rotation of the blocks and the consequent different deformation of vertical and horizontal joints have influence on the strain field maps.
机译:具有规则正交异性织构的复合固体的平面内弹性行为的宏观建模是本研究的目的。在宏观尺度上,可以通过对特定的有限元代码所基于的广义连续体进行均化来包括异质性的影响。作为一种选择,最近基于离散的机械公式提出了一种特定的刚性单元方法(Casolo,2004)。本文提出了这类研究的续篇,并阐述了正交各向异性Cosserat连续体与所提出的刚性单元之间的理论关系。然后,参考两种不同的砖石样纹理,计算相应的Cosserat连续体和刚性单元模型的本构参数。数值分析比较了它们的性能,并显示了在集中载荷情况下复合纹理的影响。通过观察块的局部旋转以及随之而来的垂直和水平节理的不同变形如何影响应变场图,指出了在宏观尺度上辨别不同结构材料行为的能力。

著录项

  • 作者

    S. Casolo;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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