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High-epoxy value bio-based epoxy emulsion reinforced interfacial properties of carbon fiber/epoxy composites

机译:高环氧值生物基环氧乳液增强碳纤维/环氧复合材料界面性能

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摘要

The development of new bio-based epoxy resins and the search for new application areas have become important research directions for bio-based epoxy resins. Using protocatechuic acid (PA) as a bio-based raw material, brominated alkenes with different chain length were introduced into PA through substitution reaction, and then oxidized to obtain epoxy resins (PA-EP) with different epoxy values. After that, it was introduced into epoxy resin (diglycidyl ether bisphenol A DGEBA) sizing agent to replace part of DGEBA to prepare new sizing agents. Sizing amount test and sizing CF surface morphology show that the introduction of PA-EP with high-epoxy value made it easier be adhered to carbon fiber (CF) surface during sizing process. Interfacial shear strength and interlaminar shear strength of composite made of sizing CF (20 wt PA-EP-3) were 56.86 and 30.29 improvement against the bare CF, which was attributed to the increase in surface energy and epoxy groups after CF sizing. Therefore, PA-EP with high-epoxy value was applied as sizing agent for improving interface performance of CF for the first time, and this application was less affected by its low-output problem compared to its application as a matrix resin in the field of composite manufacturing.
机译:新型生物基环氧树脂的开发和对新应用领域的探索已成为生物基环氧树脂的重要研究方向。以原儿茶酸(PA)为生物基原料,通过取代反应将不同链长的溴化烯烃引入PA中,然后氧化得到不同环氧树脂(PA-EP)。之后,将其引入环氧树脂(二缩水甘油醚双酚A[DGEBA])施胶剂中,以取代部分DGEBA,制备新的施胶剂。施胶量试验和CF表面形态测定表明,引入高环氧值PA-EP使其在施胶过程中更容易粘附在碳纤维(CF)表面。施胶CF(20 wt% PA-EP-3)制成的复合材料的界面剪切强度和层间剪切强度分别比裸CF提高56.86%和30.29%,这归因于CF施胶后表面能和环氧基团的增加。因此,首次将高环氧树脂PA-EP作为施胶剂应用于改善CF的界面性能,与在复合材料制造领域作为基体树脂的应用相比,该应用受其低产量问题的影响较小。

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