Prediction of the Elastic Properties of the Clay-Rice Straw Composite by Numerical Homogenization Technique using Digimat
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Abstract
This paper deals with numerical modelling of the
elastic properties of the rice straw-clay composite. This composite
material is currently attracting interest because of its low impact
on the environment but also for economic reasons. Benefiting
from the advantages of a promising building material, straw
reinforced composites attract more attention. This work allowed to
model the effect of the straw inclusions on the elastic properties of
the composite by a numerical approach considering the aspect
ratio, the volume fraction, the orientation and the distribution of
the straw inclusions. The Mori-Tanaka homogenization scheme
for the RVEs is done using Digimat-MF software and the 3D
composite microstructure models are generated by the
Digimat-FE software. This made it possible to calculate the
effective elastic properties of the clay-rice straw composites by
numerical simulation. An empirical linear correlation between the
volume fraction of the inclusions and the Young's modulus has
been proposed. The results obtained can help to better control the
formulation of the composite in developing countries.
