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A micromechanical model for porous materials with a reinforced matrix
•A micro-macro model is proposed for a porous materials with reinforced matrix.•The proposed model considers heterogeneities at two different materials scales.•Effects of porosity and small inclusions are taken into account simultaneously.•The proposed model is applied to a cement paste subjected to...
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Published in: | Mechanics research communications 2016-03, Vol.72, p.81-86 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | •A micro-macro model is proposed for a porous materials with reinforced matrix.•The proposed model considers heterogeneities at two different materials scales.•Effects of porosity and small inclusions are taken into account simultaneously.•The proposed model is applied to a cement paste subjected to a carbonation process.
In this study a micromechanical model is proposed for ductile porous material whose matrix is reinforced by small inclusions. The solid phase is described by a pressure sensitive plastic model. Based on works of Maghous et al. [6], a macroscopic plastic criterion is firstly obtained by using a two-step homogenization procedure. The effect of porosity at the mesoscale and the influence of inclusions at the microscale are taken into account simultaneously by this criterion. With a non-associated plastic flow rule, the micro-macro model is applied to modeling of mechanical behavior of a cement paste. In particular, we have considered at the microscopic scale the formation of calcite grains by carbonation process in the solid matrix. The studied cement paste is then seen as a reinforced matrix–pore system. Comparisons between numerical results and experimental data show that the proposed model is able to capture the main features of the mechanical behavior of the studied material. |
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ISSN: | 0093-6413 1873-3972 |
DOI: | 10.1016/j.mechrescom.2016.01.008 |