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Effects of Styrene-lsoprene Copolymer Glass Fiber Coatings on Woven Glass Cloth Epoxy Composite Performance

机译:苯乙烯-异戊二烯共聚物玻璃纤维涂料对机织玻璃布环氧复合材料性能的影响

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Woven glass-epoxy composites were prepared from mats that had been treated in a variety of ways.Fibers were coated with a commercial sizing,no sizing,and a surfactant coating.In addition,fibers were coated with styrene-isoprene copolymers at varying molar ratios using a novel technique termed admicellar polymerization.Dynamic contact angle measurements were used to quantify the effect of the different coating techniques on the fiber,while dynamic mechanical analysis (DMA)and flexural testing were used to characterize the cured composites.Wetting studies conducted with EPON 828 resin revealed no difference in wetting for the polymer-treated fiber compared to the commercially-treated fiber.Aqueous wetting results were consistent with a surfactant layer adsorbed on the polymer treated and surfactant treated fiber surface.DMA established that both the polymer and surfactant treatment depressed the alpha transition temperature of the composite and suggested an interpenetrating network existed at the fiber-matrix interface.Flexural strength testing showed the properties of the composites made from surfactant-treated and polymer-treated glass fibers were comparable to composites made from commercially-sized fibers and exceeded the flexural strength of the composite made from glass fibers without sizing.
机译:由经过各种方式处理的垫子制成机织玻璃-环氧复合材料。将纤维涂以商业上浆,无上浆和表面活性剂涂层。此外,将纤维涂以不同摩尔比的苯乙烯-异戊二烯共聚物通过动态接触角测量来量化不同涂层技术对纤维的影响,同时使用动态力学分析(DMA)和弯曲测试来表征固化的复合材料.EPON进行的润湿研究与商业化处理的纤维相比,828树脂的润湿性没有变化,水润湿结果与表面活性剂层吸附在聚合物处理和表面活性剂处理的纤维表面上一致,DMA确定了聚合物和表面活性剂的处理降低了复合材料的α转变温度并暗示存在互穿网络弯曲强度测试表明,由表面活性剂处理和聚合物处理的玻璃纤维制成的复合材料的性能可与商业尺寸的纤维制成的复合材料相媲美,并且超过了由玻璃纤维制成的复合材料的抗弯强度没有大小。

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