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Enhanced interfacial properties of carbon fiber/epoxy composites by coating carbon nanotubes onto carbon fiber surface by one-step dipping method

机译:通过一步浸渍法将碳纳米管涂覆到碳纤维表面上通过涂布碳纳米管来增强碳纤维/环氧复合材料的界面性质

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摘要

A type of carbon fiber/carbon nanotubes (CF/CNTs) multi-scale reinforcement was prepared by one-step dipping method, in which silane coupling agent (3-glycidyl ether oxy-propyl trimethoxy silane, KH560) was used as the bridge between CF and CNTs. Results showed that CNTs were uniformly coated onto CF surface, and the surface chemical activity, wettability and single fiber tensile strength of modified CFs were all improved significantly. More importantly, the interfacial shear strength (IFSS) of CF/CNTs reinforced epoxy composite, CF/CNTs composite, observed by SEM, showed good interface adhesion. It was also found that the silane coupling agent and CNTs would enhance the interfacial properties synergistically. Besides, the bridging effect of CNTs as the interfacial reinforcing mechanism for CF/CNTs multi-scale reinforcement composite was put forward. This special reinforcing mechanism may be as the guiding principle for CF surface modification and interfacial properties enhancement.
机译:通过一步浸渍法制备了一种碳纤维/碳纳米管(CF / CNT)多尺度增强,其中使用硅烷偶联剂(3-缩水甘油醚氧基三氧基硅烷,KH560)作为桥梁CF和CNT。结果表明,CNT均匀地涂覆在CF表面上,改性CFS的表面化学活性,润湿性和单纤维拉伸强度显着提高。更重要的是,通过SEM观察到的CF / CNT加强环氧复合材料的界面剪切强度(IFS),CF / CNTS复合材料,显示出良好的界面粘附。还发现硅烷偶联剂和CNTs将协同增强界面性能。此外,提出了CNT作为CF / CNTS多尺度增强复合材料的界面增强机理的CNT的桥接效果。这种特殊的增强机制可以作为CF表面改性和界面性能增强的指导原理。

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