2018
DOI: 10.1590/s1517-707620180004.0580
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Mechanical behavior and water absorption in sisal/glass hybrid composites

Abstract: This study aimed to assess the effect of hybridization on thermomechanical properties and water absorption of composite materials, by introducing sisal fiber tissue into the material. To that end, two composite material plates were manufactured, the first with five layers of E-glass reinforcement mat and the second with three layers of E-glass fiber interspersed with two layers of sisal fibers, both used as an orthophthalic polyester resin matrix. The material was then submitted to tensile, three-point bending… Show more

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Cited by 14 publications
(24 citation statements)
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“…Da Silva et al. 64 came to the conclusion that in the composites studied in the dry state, there was a good adhesion between the fiber and the matrix, and in the wet state, it did not have this great adhesion. Ferreira et al.…”
Section: Hybrid Sisal/glass Compositementioning
confidence: 99%
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“…Da Silva et al. 64 came to the conclusion that in the composites studied in the dry state, there was a good adhesion between the fiber and the matrix, and in the wet state, it did not have this great adhesion. Ferreira et al.…”
Section: Hybrid Sisal/glass Compositementioning
confidence: 99%
“…Researchers performed several studies on this hybrid composite of sisal/glass with different matrices (epoxy, polyester, polyethylene, and polypropylene (PP)) in different compositions, fiber sizes, orientations, and treatments, prepared with some techniques of manufacture (hand lay-up, compression molded, extrusion machine, press consolidation, solution mixing, resin transfer molding, and injection molding), analyzing several properties (mechanical, water absorption, thermal, rheological, dynamic mechanical, tribological, chemical, electrical, and morphological). 2865…”
Section: Hybrid Sisal/glass Compositementioning
confidence: 99%
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