首页> 外文OA文献 >Improved Mechanical Properties of Copoly(Phthalazinone Ether Sulphone)s Composites Reinforced by Multiscale Carbon Fibre/Graphene Oxide Reinforcements: A Step Closer to Industrial Production
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Improved Mechanical Properties of Copoly(Phthalazinone Ether Sulphone)s Composites Reinforced by Multiscale Carbon Fibre/Graphene Oxide Reinforcements: A Step Closer to Industrial Production

机译:通过多尺度碳纤维/石墨烯氧化物增强液加固的共聚(酞菁醚砜)S复合材料的改进机械性能:较近工业生产的步骤

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摘要

The properties of carbon fibre (CF) reinforced composites rely heavily on the fibre-matrix interface. To enhance the interfacial properties of CF/copoly(phthalazinone ether sulfone)s (PPBES) composites, a series of multiscale hybrid carbon fibre/graphene oxide (CF/GO) reinforcements were fabricated by a multistep deposition strategy. The optimal GO loading in hybrid fibres was investigated. Benefiting from the dilute GO aqueous solution and repeated deposition procedures, CF/GO (0.5%) shows a homogeneous distribution of GO on the hybrid fibre surface, which is confirmed by scanning electron microscopy, atomic force microscope, and X-ray photoelectron spectroscopy, thereby ensuring that its PPBES composite possesses the highest interlaminar shear strength (91.5 MPa) and flexural strength (1886 MPa) with 16.0% and 24.1% enhancements, respectively, compared to its non-reinforced counterpart. Moreover, the incorporation of GO into the interface is beneficial for the hydrothermal ageing resistance and thermo-mechanical properties of the hierarchical composite. This means that a mass production strategy for enhancing mechanical properties of CF/PPBES by regulating the fiber-matrix interface was developed.
机译:碳纤维(CF)增强复合材料的性质严重依赖于光纤矩阵界面。为了增强CF / Copoly(酞菁醚砜)S(PPBES)复合材料的界面性质,通过多步沉积策略制造一系列多尺寸杂化碳纤维/石墨烯(CF / GO)增强剂。研究了混合纤维中的最佳载荷。从稀释GO水溶液和重复沉积程序获益,CF / GO(0.5%)所示GO的混合纤维表面,这是由扫描电子显微镜,原子力显微镜,以及X-射线光电子光谱法确认上的均匀分布,从而确保其PPBES复合具有最高的层间剪切强度(兆帕91.5)和弯曲强度(1886兆帕),16.0%和24.1%的增强相比,分别到其非增强对应物。此外,进入界面的掺入是有益于等级复合材料的水热老化抗性和热机械性能。这意味着开发了通过调节纤维 - 基质界面来增强CF / PPBES的机械性能的大规模生产策略。

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