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A great improvement of tensile properties of C_f/AZ91D composite through grafting CNTs onto the surface of the carbon fibers

机译:通过将碳纳米管接枝到碳纤维表面上,C_f / AZ91D复合材料的拉伸性能大大提高

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摘要

Effective load transfer interface is critical to improving the performance of metal matrix composites (MMCs). This paper proposes fabricating CNTs-grafted C-f/AZ91D composites in which the carbon fiber surface was grafted with the carbon nanotubes (CNTs) through electrophoretic deposition (EPD) process. The influence of microstructure on tensile properties of the composites was investigated by designing different experimental parameters. The fracture morphologies and SEM micrographs combined with EDS were examined to determine the strengthening and dispersion mechanism of CNTs grafted on the surface of carbon fibers in composites. The results indicates that introducing CNTs to the surface of the carbon fibers can smooth the transition of interfacial composition by forming the gradient interface layer. This means that the interface property is adjusted by grafting CNTs on the surface of carbon fibers, which is beneficial to the properties improvement of MMCs.
机译:有效的载荷传递界面对于提高金属基复合材料(MMC)的性能至关重要。本文提出了制备碳纳米管接枝的C-f / AZ91D复合材料的方法,其中碳纤维表面通过电泳沉积(EPD)工艺与碳纳米管(CNT)接枝。通过设计不同的实验参数,研究了微结构对复合材料拉伸性能的影响。研究了断裂形貌和SEM图像,结合EDS,以确定接枝在碳纤维表面的碳纳米管在复合材料中的强化和分散机理。结果表明,将CNTs引入碳纤维表面可以通过形成梯度界面层而使界面组成的过渡平滑。这意味着通过在碳纤维表面上接枝CNT来调节界面性质,这有利于MMC的性质改善。

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