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Influence of microwave plasma treatment on the surface properties of carbon fibers and their adhesion in a polypropylene matrix

机译:微波等离子体处理对聚丙烯基质碳纤维表面性质及其粘附性的影响及其在聚丙烯基质中的粘附性

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A commercially available carbon fiber (CF) with an epoxy-based sizing (EP-sized CF) and an unsized CF have been plasma treated to study the effect on the fiber-matrix adhesion towards a polypropylene matrix. The EP-sized fiber was chosen because of its predictable low adhesion in a polypropylene (PP) matrix. The fibers have been modified using a microwave low-pressure O_2/CO_2/N_2-gas plasma source (Cyrannus~?) developed at IWS in a batch process. One aim of this study was the evaluation of parameters using high energies and short time periods in the plasma chamber to see the effect on mechanical performance of CF. These results will be the fundamental work for a planned continuous plasma modification line. The CF surface was characterized by determining the surface energies, single fiber tensile strength and XPS analysis. The adhesion behavior before and after plasma treatment was studied by single fiber pull-out test (SFPO) and scanning electron microscopy (SEM). It was shown that the CO_2- and O_2-plasma increases the number of functional groups on the fiber surface during short time plasma treatment of 30 s. Carboxylic groups on the unsized CF surface resulting from O_2-plasma treatment lead to an enhanced fiber-matrix adhesion, whereas the fiber strength was merely reduced.
机译:具有环氧基施胶(EP尺寸CF)和未调整的CF的市售碳纤维(CF)已被血浆处理以研究对朝向聚丙烯基质的纤维 - 基质粘附的影响。选择EP大小的纤维,因为其在聚丙烯(PP)基质中可预测的低粘附性。在批处理过程中,使用在IWS的微波低压O_2 / CO_2 / N_2 - 气体等离子体源(Cyrannus〜〜)进行修改。本研究的一个目的是使用高能和等离子体室中的短时间内评估参数,以便看到对CF的机械性能的影响。这些结果将是计划连续等离子体改性线的基本工作。 CF表面的特征在于确定表面能,单纤维拉伸强度和XPS分析。通过单纤维拉出试验(SFPO)和扫描电子显微镜(SEM)研究了等离子体处理前后的粘合性能。结果表明,CO_2和O_2-血浆在短时间血浆治疗期间增加了纤维表面上的官能团的数量。由O_2-等离子体处理产生的未调整的CF表面上的羧基导致增强的纤维 - 基质粘附,而仅纤维强度仅降低。

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