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A novel preparation approach for improving the mechanical and wet tribological properties of carbon fabric/phenolic composites

机译:一种改善碳纤维织物/酚醛复合材料的机械和湿摩擦学性能的新制备方法

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摘要

In order to overcome the poor interfacial bond between carbon fabric and phenolic matrix, carbon fiber powders (CFPs) were obtained by dry ball-milling technique and then the carbon fabric/phenolic composites filled with 0 wt% (C0), 1 wt% (C1) and 2 wt% (C2). CFPs were fabricated by successive filtration method and hot-press technique. Their mechanical and wet tribological properties were investigated based on the characteristics of surface morphology, three-dimensional surface profiles, skeletal density, pore structure and compressibility. Results show that the incorporation of CFPs obviously improves the interfacial bond and further increases the mechanical properties. Meanwhile, the introduction of CFPs increases the friction coefficient and improves the wear resistance. Notably, C1 exhibits the biggest friction coefficient, the smallest wear rate and the biggest flexural, shear and tensile strengths. Besides, SEM observation of worn surfaces suggests that the matrix crack and fiber breakage induced by fiber bending are the main wear mechanisms for C0 and fiber breakage induced by wear debris is the chief wear mechanism for C1 and C2. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了克服碳纤维织物与酚醛基体之间不良的界面结合,通过干式球磨技术获得了碳纤维粉末(CFP),然后将碳纤维织物/酚醛复合材料分别填充了0 wt%(C0),1 wt%( C1)和2 wt%(C2)。通过连续过滤法和热压技术制备CFP。根据表面形态,三维表面轮廓,骨架密度,孔结构和可压缩性,研究了它们的机械和湿摩擦学性能。结果表明,CFP的加入明显改善了界面结合,并进一步提高了机械性能。同时,CFP的引入增加了摩擦系数并改善了耐磨性。值得注意的是,C1表现出最大的摩擦系数,最小的磨损率以及最大的弯曲,剪切和拉伸强度。此外,对磨损表面的SEM观察表明,基体裂纹和纤维弯曲引起的纤维断裂是C0的主要磨损机理,而磨损碎片引起的纤维断裂是C1和C2的主要磨损机理。 (C)2016 Elsevier Ltd.保留所有权利。

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