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Tribo-Mechanical Characterization of Carbon Fiber-Reinforced Cyanate Ester Resins Modified With Fillers

机译:用填料改性碳纤维增强氰酸酯树脂的摩擦力学表征

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摘要

High-performance polymer composites are being increasingly favored for structural applications. For this purpose, efforts are being focused on exploring the potential of high-performance thermoplastics and thermosets. Cyanate ester (CE) resin is a special thermoset that can be used at up to 400 °C without any considerable degradation; however, its tribological properties are not at the adequate level. Hence, it is needed to use this polymer in composite form with the fibrous/particulate reinforcement to impart better tribological properties and mechanical strength via a strong fiber–matrix interface. Carbon fiber/fabrics are at the forefront as reinforcement for specialty polymers. The tribological and tensile properties of cyanate ester (CE) composites-filled graphite, polytetrafluoroethylene (PTFE), and MoS micron-sized fillers reinforced with carbon fibers (CF) are investigated experimentally in a block-on-ring setup at 100 N, for 10 h, and with a sliding distance of approximately 10,000 m, against a hardened polished 100Cr6 steel shaft and diamond-like-coated (DLC) 100Cr6 steel shaft. The tribological properties of the composites including the coefficient of friction and specific wear rate are enhanced especially with the incorporation of graphite fillers. The friction coefficient and wear rate of the graphite-based composite was decreased significantly at 5 wt.% of graphite concentration. Further, at the same concentration, the graphite-based composite showed superior tensile properties as compared to the reference system owing to better dispersion and adhesion between the fibers and matrix. Tensile tests are performed to characterize the fiber–matrix interfacial adhesion and other strength properties.
机译:高性能聚合物复合材料越来越多地用于结构应用。为此目的,努力旨在探索高性能热塑性塑料和热固性件的潜力。氰酸酯(CE)树脂是一种特殊的热固性件,可在高达400°C的情况下使用而无需任何相当大的降解;但是,其摩擦学特性不适用于足够的水平。因此,需要在复合形式用纤维/颗粒增强用该聚合物通过强纤维 - 基质界面赋予更好的摩擦学性能和机械强度。碳纤维/织物处于最前沿,作为专业聚合物的增强。用碳纤维增强的氰酸酯(Ce)复合石墨,聚四氟乙烯(PTFE)和MOS微米尺寸填料的摩蒂酯(Ce)复合石墨,聚四氟乙烯(CF)的摩蒂氏菌(CF)的抗拉性特性进行实验在100 n处进行实验研究,用于10小时,并且具有约10,000μm的滑动距离,抗硬化抛光的100Cr6钢轴和金刚石涂层(DLC)100Cr6钢轴。包括摩擦系数和特定磨损率的复合材料的摩擦学特性,特别是掺入石墨填料。石墨基复合物的摩擦系数和磨损率在5重量%下显着降低。石墨浓度的%。此外,在相同的浓度下,与参考系统相比,基于石墨的复合物在纤维和基质之间的分散和粘合性上,与参考系统相比显示出优异的拉伸性能。进行拉伸试验以表征纤维 - 基质界面粘附和其他强度性质。

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