Etudes des caractéristiques mécaniques et physiques d’un béton végétal
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Natural fibers constitute a promising alternative in the field of sustainable construction
materials due to their mechanical properties, low environmental impact, and availability as
renewable resources. In this research work, the physical and mechanical properties of a bio-
based mortar reinforced with date palm fibers and marine algae fibers were investigated. The
main objective of this work is to evaluate the influence of these fibers on the behavior of the
material while valorizing local renewable and environmentally friendly resources. Several
formulations containing different dosages of natural fibers were prepared and subjected to a
series of standardized tests. The investigations focused on workability, bulk density, water
absorption, capillary absorption, compressive strength, flexural strength, as well as other
physical and mechanical properties.
The obtained results showed that the incorporation of natural fibers significantly
modifies the behavior of the mortar. The fibers contribute to reducing cracking, improving
ductility, and enhancing certain mechanical performances, while reducing the density of the
material and improving its thermal insulation capacity. However, an increase in fiber content
leads to reduced workability as well as increased water absorption. The observed performances
highlight the potential of date palm fibers and marine algae as reinforcing materials for
cementitious composites. Their valorization offers interesting prospects for the development of
sustainable, economical, and environmentally friendly construction materials.
