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Multi-scale structure construction of carbon fiber surface by electrophoretic deposition and electropolymerization to enhance the interfacial strength of epoxy resin composites

机译:电泳沉积和电聚合碳纤维表面的多尺度结构构建,以提高环氧树脂复合材料的界面强度

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In order to improve the interfacial strength of carbon fiber composites, a simple and efficient carbon fiber/graphene oxide (GO)/polymer mull-scale reinforcement material was prepared by electrophoretic deposition (EPD) and in-situ electropolymerization technique. The effects of surface treatment on the microstructure of CF and the properties of composites were systematically studied. Microscopic image revealed a fight and uniform coverage of the GO/polymer, which significantly increased the physical and chemical binding sites of the fiber surface, thereby improving wettability and mechanical interlocking with epoxy resin. In addition, the GO/ polymer multiscale structure on the fiber surface can be regulated by adjusting the electropolymerization time. The optimal interlaminar shear strength (ILSS) of the composites with an electropolymerization time of 120 s (CF-GO-EPI120s) was 61.9 MPa, which is 37.6% higher than that of original carbon fiber reinforced composites (45 MPa). Moreover, the tensile strength of carbon fiber monofilament was increased from 3.01 to 3.22 GPa. The failure surface of interlaminar shear strength test and dynamic mechanical properties of the composite confirmed the improvement of interface properties and formation of a good interfacial layer. This work shows that EPD of GO and electropolymerization is a simple and efficient method for the preparation of carbon fiber composites with good interfacial properties, and the process is simple and continuous, which is a potential application in industry.
机译:为了提高碳纤维复合材料的界面强度,通过电泳沉积(EPD)和原位电聚合技术制备了一种简单有效的碳纤维/氧化石墨烯(GO)/聚合物鸥尺度增强材料。系统地研究了表面处理对CF微观结构和复合材料性能的影响。显微图像显示出GO /聚合物的战斗力和均匀覆盖度,这显着增加了纤维表面的物理和化学结合位点,从而改善了润湿性和与环氧树脂的机械互锁。另外,可以通过调节电聚合时间来调节纤维表面上的GO /聚合物多尺度结构。电聚合时间为120 s(CF-GO-EPI120s)的复合材料的最佳层间剪切强度(ILSS)为61.9 MPa,比原始碳纤维增强复合材料(45 MPa)高37.6%。而且,碳纤维单丝的拉伸强度从3.01GPa增加到3.22GPa。层间剪切强度试验的破坏面和复合材料的动态力学性能证实了界面性能的改善和良好界面层的形成。这项工作表明,GO的EPD和电聚合是一种制备界面性能良好的碳纤维复合材料的简单有效的方法,并且该过程简单且连续,在工业上具有潜在的应用前景。

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