Vautard Frédéric, Fioux Philippe, Vidal Loïc, Siffer Frédéric, Roucoules Vincent, Schultz Jacques, Nardin Michel, Defoort Brigitte
Institut de Science des Matériaux de Mulhouse, Université de Haute Alsace, CNRS-UMR 7361 , 15 rue Jean Starcky, 68057 Mulhouse, France.
ACS Appl Mater Interfaces. 2014 Feb 12;6(3):1662-74. doi: 10.1021/am4045663. Epub 2014 Jan 13.
Maleic anhydride plasma polymer was deposited at the surface of carbon fibers and functionalized with vinyl and thiol groups to improve its adhesion strength with an acrylate matrix cured by an electron beam. A characterization of the fiber surface properties was done before and after coating (topography, surface chemistry, and surface energy). Sharp improvements of the interfacial shear strength (+ 120%), measured by a micromechanical test derived from the pull-out test, were obtained and, to the best of our knowledge, never reported before. The values were close to the ones obtained with a thermal cure. The comparison of this approach with other types of surface treatments (oxidation, grafting of coupling agents) enabled the establishment of a general strategy for the improvement of the interfacial adhesion in carbon fiber composites cured by an electron beam and potentially the improvement of their mechanical properties. This strategy is based on a high surface density of functionalities that are generating covalent bonding during the polymerization of the matrix and on the insertion of a polymer layer strongly attached to the fiber surface and acting as a buffer between the fiber surface and the matrix to counteract the generation of stress in the interphase.
在碳纤维表面沉积马来酸酐等离子体聚合物,并用乙烯基和硫醇基团进行功能化处理,以提高其与通过电子束固化的丙烯酸酯基体的粘合强度。在涂层前后对纤维表面性能进行了表征(形貌、表面化学和表面能)。通过源自拔出试验的微机械试验测得的界面剪切强度大幅提高(提高了120%),据我们所知,此前从未有过相关报道。这些数值与通过热固化获得的数值相近。将这种方法与其他类型的表面处理(氧化、偶联剂接枝)进行比较,有助于制定一种通用策略,以改善通过电子束固化的碳纤维复合材料的界面粘合,并有可能改善其机械性能。该策略基于在基体聚合过程中产生共价键的高表面功能密度,以及插入一层牢固附着在纤维表面并在纤维表面和基体之间起到缓冲作用以抵消界面应力产生的聚合物层。