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Interaction between carbon fibers and polymer sizing: Influence of fiber surface chemistry and sizing reactivity

机译:碳纤维与聚合物上浆的相互作用:纤维表面化学和上浆反应性的影响

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摘要

Different aspects of the interaction of carbon fibers and epoxy-based polymer sizings are investigated, e.g. the wetting behavior, the strength of adhesion between fiber and sizing, and the thermal stability of the sizing layer. The influence of carbon fiber surface chemistry and sizing reactivity is investigated using fibers of different degree of anodic oxidation and sizings with different number of reactive epoxy groups per molecule. Wetting of the carbon fibers by the sizing dispersion is found to be specified by both, the degree of fiber activation and the sizing reactivity. In contrast, adhesion strength between fibers and sizing is dominated by the surface chemistry of the carbon fibers. Here, the number of surface oxygen groups seems to be the limiting factor. We also find that the sizing and the additional functionalities induced by anodic oxidation are removed by thermal treatment at 600 degrees C, leaving the carbon fiber in its original state after carbonization. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究了碳纤维和基于环氧的聚合物上浆剂相互作用的不同方面,例如。润湿性能,纤维与施胶之间的粘合强度以及施胶层的热稳定性。研究了碳纤维表面化学和上浆反应性的影响,使用不同程度的阳极氧化的纤维和每分子具有不同数量的反应性环氧基的上浆。发现由上浆分散体润湿碳纤维由纤维活化程度和上浆反应性两者来规定。相反,纤维和上浆剂之间的粘合强度主要由碳纤维的表面化学组成。在此,表面氧基团的数目似乎是限制因素。我们还发现,通过在600摄氏度下进行热处理,可以去除由阳极氧化引起的上浆和其他功能,使碳纤维在碳化后保持其原始状态。 (C)2018 Elsevier B.V.保留所有权利。

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