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Comparison of Interfacial Adhesion Between Polyester and Epoxy Matrix Composites Reinforced with Fique Natural Fiber

机译:聚酯和环氧基复合材料与Fique天然纤维增强的界面粘附的比较

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Polyester and epoxy resins are thermosetting polymers extensively used as composite materials matrices. The advantage of the polyester resin in comparison with the epoxy matrix is its lower cost. On the other hand, its permeability can be considered a disadvantage, once as the solvents dry the resin becomes more porous. This represents a direct impact on its mechanical properties. Epoxy resin has no solvents and its polymerization occurs only when two components are mixed, resin and hardener. The processing of this type of polymer requires control of temperature and humidity during its production. Polyester resin continues to cure over time, are prone to cracking and breaking, while epoxy resin once cured retains its full properties. The current pullout tests were performed to compare the interfacial adhesion of fique fibers with epoxy and polyester polymer matrix. The results indicated a critical length approximately 65% higher for the fique fiber/polyester in comparison to fique fiber/epoxy as well as an interfacial strength 4.9 times higher, which may indicate stronger adhesion of fique fiber with epoxy resin.
机译:聚酯和环氧树脂是热固性聚合物,广泛用作复合材料基质。与环氧基质相比的聚酯树脂的优点是其成本较低。另一方面,其渗透性可以被认为是缺点,一旦随着溶剂干燥,树脂变得更加多孔。这代表了对其机械性能的直接影响。环氧树脂没有溶剂,仅当两个组分混合,树脂和硬化剂时才发生它们的聚合。这种类型的聚合物的加工需要在其生产过程中控制温度和湿度。聚酯树脂随着时间的推移继续治愈,易于破解和破裂,而环氧树脂一旦固化,则保持其全部性质。进行目前的拉出试验以比较Fieque纤维与环氧和聚酯聚合物基质的界面粘附。结果表明,对于精通纤维/环氧树脂以及界面强度,对Fique纤维/聚酯的临界长度约为65%,并且界面强度较高4.9倍,这可能表明Fique纤维与环氧树脂的粘附更强。

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