Effect of interface in hybrid reinforcement of flax/glass on mechanical properties of vinyl ester composites

Hybrid fiber-reinforced thermoset plastic matrix composites are increasingly being used in automotive applications, owing to their high specific strength and modulus. In this study, hybrid composites were manufactured by means of hybrid reinforcement; that is, biaxial glass and woven flax fabrics in...

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Bibliographic Details
Published inPolymer testing Vol. 73; pp. 404 - 411
Main Authors Naga Kumar, C., Prabhakar, M.N., Song, Jung-il
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.02.2019
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Summary:Hybrid fiber-reinforced thermoset plastic matrix composites are increasingly being used in automotive applications, owing to their high specific strength and modulus. In this study, hybrid composites were manufactured by means of hybrid reinforcement; that is, biaxial glass and woven flax fabrics in vinyl ester resin with various stackings were created via the vacuum assisted resin transferee molding (VARTM) process. The manufactured composites were tested for their mechanical properties (tensile strength, modulus, flexural strength, and impact strength) and verified by means of morphological analysis. The results demonstrated rather unexpected phenomena, such as the tensile strength of the pure woven glass fibers (85.16 MPa) being lower than that of the hybrid composites (143.21 MPa). The flexural tests indicated that the strength (305.46 MPa) is higher for composites with glass ply at the bottom surface, and composites with glass ply on both ends exhibit high impact strength (0.145 J/mm2) compared to others. A water absorption test and thermo-gravimetric analysis were also performed. •Glass-Flax fabric/Vinyl ester Hybrid composites were developed by VARTM process.•The tensile strength of the composites lay on the interfaces between glass fabrics and flax fabrics.•The tensile strength of hybrid composites is more than the pure glass fabric composites.•The hybrid composite is competent to glass fiber composites which reduces the weight, cost and environmental pollution.
ISSN:0142-9418
1873-2348
DOI:10.1016/j.polymertesting.2018.12.005