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首页> 外文期刊>Polymers & Polymer Composites >Friction and Wear of Epoxy Composites Containing Silica Nanoparticles Grafted by Hyperbranched Aromatic Polyamide
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Friction and Wear of Epoxy Composites Containing Silica Nanoparticles Grafted by Hyperbranched Aromatic Polyamide

机译:超支化芳族聚酰胺接枝的含二氧化硅纳米粒子的环氧树脂复合材料的摩擦磨损

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摘要

Nano-sizedSiO2particles grafted with hyperbranched aromatic polyamide were employed as fillers for fabricating epoxy based composites. The hyperbranched aromatic polyamide was selected because its terminal amine groups could take part in the curing reaction of epoxy resin and covalently connect silica nanoparticles with the matrix. The experimental results proved the occurrence of this reaction, and indicated that the presence of the grafted SiO2 in epoxy does not change the overall curing mechanism of epoxy. In comparison to the composites filled with untreated nano-SiO2 particles, the composites with the grafted nano-SiO2 exhibited significantly improved sliding wear resistance and reduced frictional coefficient owing to the strong filler/matrix interfacial bonding. Moreover, hyperbranched aromatic polyamide grafted nano-SiO2 was more effective to enhance tribological properties of epoxy than linear polymers grafted versions.
机译:接枝了超支化芳族聚酰胺的纳米级SiO2颗粒被用作制备环氧基复合材料的填料。选择超支化芳族聚酰胺是因为其末端胺基可以参与环氧树脂的固化反应,并将二氧化硅纳米粒子与基质共价连接。实验结果证明了该反应的发生,并表明在环氧树脂中接枝的SiO2的存在不会改变环氧树脂的整体固化机理。与填充有未处理的纳米SiO2颗粒的复合材料相比,由于牢固的填料/基体界面结合,具有接枝的纳米SiO2的复合材料具有显着改善的滑动耐磨性和降低的摩擦系数。此外,超支化芳族聚酰胺接枝纳米SiO2比线型聚合物接枝形式更有效地增强了环氧树脂的摩擦学性能。

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