Macroscopic modelling of structured materials: Relationship between orthotropic Cosserat continuum and rigid elements
نویسنده
چکیده
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, S., 2004. Modelling in-plane micro-structure of masonry walls by rigid elements. International Journal of Solids and Structures 41(13), 3625–3641] 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. 2005 Elsevier Ltd. All rights reserved.
منابع مشابه
A frictional Cosserat model for the slow shearing of granular materials
A rigid-plastic Cosserat model for slow frictional flow of granular materials, proposed by us in an earlier paper, has been used to analyze plane and cylindrical Couette flow. In this model, the hydrodynamic fields of a classical continuum are supplemented by the couple stress and the intrinsic angular velocity fields. The balance of angular momentum, which is satisfied implicitly in a classica...
متن کاملA NEW MATHEMATICAL MODELING OF CONTACT TREATMENT BETWEEN AN ORTHOTROPIC MATERIAL AND A RIGID INDENTER
Abstract: The boundary value problems involving contact are of the great importance in industries related to mechanical and materials engineering. These mixed problems are challenging since a priori unknown deformed surface of the material contacting a rigid indenter is to be determined as a part of the solution. Anisotropic solids represent an important class of engineering materials including...
متن کاملStatic equations of the Cosserat continuum derived from intra-granular stresses
I present a derivation of the static equations of a granular mechanical interpretation of Cosserat continuum based on a continuum formulated in the intra-granular fields. I assume granular materials with three-dimensional, nonspherical, and deformable grains, and interactions given by traction acting on finite contact areas. Surface traction is decomposed into a mean and a fluctuating part. The...
متن کاملSimulations of Indentation at Continuum and Atomic Levels
The main goal of this work is to determine values of elastic constants of orthotropic, transversely isotropic and cubic materials through indentation tests on thin layers bonded to rigid substrates. Accordingly, we first use the Stroh formalism to provide an analytical solution for generalized plane strain deformations of a linear elastic anisotropic layer bonded to a rigid substrate, and inden...
متن کاملA Frictional Cosserat Model for the Flow of Granular Materials through a Vertical Channel
A rigid-plastic Cosserat model has been used to study dense, fully developed flow of granular materials through a vertical channel. Frictional models based on the classical continuum do not predict the occurrence of shear layers, at variance with experimental observations. This feature has been attributed to the absence of a material length scale in their constitutive equations. The present mod...
متن کامل