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首页> 外文期刊>Journal of Materials Science >Poly(carbazole-co-acrylamide) electrocoated carbon fibers and their adhesion behavior to an epoxy resin matrix
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Poly(carbazole-co-acrylamide) electrocoated carbon fibers and their adhesion behavior to an epoxy resin matrix

机译:聚咔唑共丙烯酰胺电涂覆的碳纤维及其对环氧树脂基体的粘合性能

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The surface properties of original high strength and preoxidized high modulus carbon fibers were altered by electrocopolymerizing acryl amide and carbazole and therefore depositing a copolymer coating onto the fibers. Scanning electron microscopy and zeta-potential measurements confirmed the presence of a rough but dense and continuous electrocoating with a basic surface character. Therefore, 'good' adhesion behavior between the electrocoated carbon fibers and an epoxy resin matrix should be expected. The interfacial adhesion was measured using the single fiber pull-out and single fiber indentation test. It was shown that only 'intermediate' adhesion was present between the carbon fibers and the electrocoating, but superior adhesion between the coating and epoxy resin exists. The single fiber model composites always failed at the fiber/electrocoating interface. However, as shown by using the indentation test, the interfacial adhesion between fibers and electrocoating can be significantly improved if preoxidized fibers are used as substrate for electropolymerization. A very high tensile strength for the electrocoating can be expected as derived from the single fiber pull-out tests. (C) 2002 Kluwer Academic Publishers. [References: 43]
机译:原始的高强度碳纤维和预氧化的高模量碳纤维的表面性能通过丙烯酰胺和咔唑的电共聚而改变,从而在纤维上沉积了共聚物涂层。扫描电子显微镜和ζ电势测量证实存在具有基本表面特征的粗糙但致密且连续的电涂层。因此,应该期望在电涂覆的碳纤维和环氧树脂基体之间具有“良好的”粘合性能。使用单纤维拉出和单纤维压痕测试测量界面粘附力。结果表明,在碳纤维和电涂层之间仅存在“中间”粘合,但在​​涂层和环氧树脂之间却存在优异的粘合。单纤维模型复合材料总是在纤维/电涂覆界面处失效。然而,如通过压痕测试所示,如果将预氧化的纤维用作电聚合的基材,则可以显着改善纤维与电涂层之间的界面粘合力。从单纤维拉出试验可以得出,电涂层的拉伸强度非常高。 (C)2002 Kluwer学术出版社。 [参考:43]

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