Influence du traitement des granulats biosourcés sur les caractéristiques générales d'un mortier écologique
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In the context of sustainable construction and the valorization of bio-based materials, this
study investigates the use of cork waste as lightweight aggregates in plaster mortars. The
main objective is to evaluate the influence of different pre-treatments applied to natural cork
aggregates on the physical, mechanical, thermal, and acoustic properties of plaster mortars,
with the aim of developing a more efficient and environmentally friendly building material.
Three pre-treatment methods were studied: hot-water treatment (T1), hornification treatment
(T2), and lime treatment (T3). Cork aggregates were used as a partial replacement for sand
at different substitution rates (0%, 25%, 50%, 75%, and 100%). Several tests were carried
out in both fresh and hardened states, including workability, bulk density, surface hardness,
ultrasonic pulse velocity, flexural and compressive strength, thermal conductivity, water
absorption, porosity, durability under wetting–drying cycles, and acoustic insulation.
The results showed that the incorporation of cork leads to a progressive decrease in mortar
density, producing lighter materials. It also significantly improves thermal insulation due to
the low thermal conductivity of cork. However, increasing the cork content results in higher
water absorption and porosity, accompanied by a reduction in mechanical strength. The
comparative analysis revealed that the hornification treatment (T2) provides the best
compromise between mechanical performance, durability, and fresh-state behavior, whereas
the lime treatment (T3) offers the best thermal insulation performance. Acoustic tests also
highlighted the potential of cork to improve sound insulation at specific frequencies.
This study confirms that plaster–cork mortars represent a promising eco-friendly solution
for the construction sector. The choice of cork pre-treatment makes it possible to tailor the
material properties according to the requirements of the intended application.
