4.7 Article

Enhanced impact properties of cementitious composites reinforced with pultruded flax/polymeric matrix fabric

Journal

ALEXANDRIA ENGINEERING JOURNAL
Volume 56, Issue 3, Pages 297-307

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.aej.2017.03.032

Keywords

Compressive strength; Impact energy; Natural fiber cement composites; Pultrusion

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Fiber reinforced concrete (FRC) has become increasingly applied in civil engineering in the last decades. Natural fiber fabric reinforced cement composites are considered to prevent damage resulting from an impact loading on the cementite plate. Flax woven fabric that has a high energy absorption capability was chosen. To increase the interfacial shear properties, the fabric was pultruded with different matrix properties that affect the strength and toughness of the pultruded fabric. In this study, three fabric structures are used to increase the anchoring of the cement in the fabric. The compressive strength and the impact energy were measured. The results revealed that pultruded fabric reinforced cement composite (PFRC) absorbs much more impact energy. PFRC under impact loading has more micro cracks, while plain cement specimen shows brittle failure. The compressive test results of PFRC indicate that flax fiber fabric polymer enhanced compressive strength remarkably. Fiber reinforcement is a very effective in improving the impact resistance of PFRC. The study defines the influence factors that control the energy dissipation of the composite, which are the hardness of the polymer and the fabric cover factor. Significant correlation between impact energy and compressive strength was proved. (C) 2017 Faculty of Engineering, Alexandria University. Production and hosting by Elsevier B.V.

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