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Performance of glass woven fabric composites with admicellar-coated thin elastomeric interphase
Authors:Harry J Barraza  Levent Aktas  Edgar A O’Rear  M Cengiz Altan
Institution:1. School of Chemical, Biological &2. Materials Engineering, University of Oklahoma, Norman, OK, USA;3. School of Aerospace and Mechanical Engineering, University of Oklahoma, Norman, OK, USA
Abstract:Adequate stress transfer between the inorganic reinforcement and surrounding polymeric matrix is essential for achieving enhanced structural integrity and extended lifetime performance of fiber-reinforced composites. The insertion of an elastomeric interlayer helps increase the stress-transfer capabilities across the fiber/matrix interface and considerably reduces crack initiation phenomena at the fiber ends. In this study, admicellar polymerization is used to modify the fiber/matrix interface in glass woven fabric composites by forming thickness-controlled poly(styrene-co-isoprene) coatings. These admicellar interphases have distinct characteristics (e.g. topology and surface coverage) depending on the surfactant/monomer ratios used during the polymerization reaction. Overall, the admicellar coatings have a positive effect on the mechanical response of resin transfer molded, E-glass/epoxy parts. For instance, ultimate tensile strength of composites with admicellar sizings improved 50–55% over the control-desized samples. Interlaminar shear strength also showed increases ranging from 18 to 38% over the same control group. Interestingly, the flexural properties of these composites proved sensitive to the type of interphase formed for various admicellar polymerization conditions. Higher surface coverage and film connectedness in admicellar polymeric sizings are observed to enhance stress transfer at the interfacial region.
Keywords:Admicellar polymerization  elastomeric interphases  thin films  poly(styrene-co-isoprene)  surfactants  fiber-reinforced polymer composites  resin transfer molding (RTM)
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