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首页> 外文期刊>International journal of applied mechanics >Mussel-Inspired Co-Deposition of Polydopamine/Silica Nanoparticles onto Carbon Fiber for Improved Interfacial Strength and Hydrothermal Aging Resistance of Composites
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Mussel-Inspired Co-Deposition of Polydopamine/Silica Nanoparticles onto Carbon Fiber for Improved Interfacial Strength and Hydrothermal Aging Resistance of Composites

机译:贻贝 - 激发聚二胺/二氧化硅纳米粒子的共沉积在碳纤维上,用于改善复合材料的界面强度和水热老化抗性

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摘要

A novel and effective strategy was first proposed for the codeposition of a mussel-inspired nanohybrid coating with excellent wettability onto the surface of carbon fibers (CFs) by simultaneous polymerization of bioinspired dopamine (DA) and hydrolysis of commercial tetraethoxysilane (TEOS) in an eco-friendly one-pot process. Mussel-inspired nanohybrids could be adhered onto the surface of CFs firmly. The novel modification could afford sufficient polar groups and significantly improve fiber surface roughness and energy without decreasing fiber intrinsic strength, which were advantageous to promote interfacial compatibility and wettability between CFs and matrix resin. As a result, the interfacial shear strength of composites increased to 48.21 +/- 1.45 MPa compared to that of untreated composites 29.47 +/- 0.88 MPa. Meanwhile, the nanohybrid coating increased significantly composites' hydrothermal aging resistance. The efficient strategy shows a promising and green platform of surface functionalization of CFs for preparing advanced polymer composites arising from broadly mechanical-demanding and energy-saving usages.
机译:首先提出了一种新颖的和有效的策略,用于通过同时聚合生物悬浮的多巴胺(DA)和ECO的商业四乙氧基硅烷(TEOS)通过同时聚合在碳纤维(CFS)表面上具有优异的润湿性。 - 友谊一锅工艺。贻贝启发的纳米冬青可以牢固地粘附到CFS表面上。该新改性能够提供足够的极性基团,并且显着改善纤维表面粗糙度和能量而不降低纤维的内在强度,这有利于促进CFS和基质树脂之间的界面相容性和润湿性。结果,与未处理的复合材料29.47 +/- 0.88MPa相比,复合材料的界面剪切强度增加到48.21 +/- 1.45MPa。同时,纳米余地涂层增加了复合材料的水热老化抗性。高效策略显示了CFS的高效和绿色平台,用于制备广泛的机械苛刻和节能用量产生的先进的聚合物复合材料。

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