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Carbon fiber non-crimp multi-axial reinforcement and epoxy mono-component system composite: fatigue behavior

机译:碳纤维非卷曲多轴增强和环氧单组分体系复合材料:疲劳性能

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摘要

Fiber reinforced polymer composites have been widely applied in the aeronautical field. However, composite processing, which uses unlocked molds, should be avoided in view of the tight requirements and also due to possible environmental contamination. To produce high performance structural frames meeting aeronautical reproducibility and low cost criteria, the Brazilian industry has shown interest to investigate the resin transfer molding process (RTM) considering being a closed-mold pressure injection system which allows faster gel and cure times. Due to the fibrous composite anisotropic and non homogeneity characteristics, the fatigue behavior is a complex phenomenon quite different from to metals materials crucial to be investigated considering the aeronautical application. Fatigue sub-scale specimens of intermediate modulus carbon fiber non-crimp multi-axial reinforcement and epoxy mono-component system composite were produced according to the ASTM 3039 D. Axial fatigue tests were carried out according to ASTM D 3479. A sinusoidal load of 10 Hz frequency and load ratio R = 0.1. It was observed a high fatigue interval obtained for NCF/RTM6 composites. Weibull statistical analysis was applied to describe the failure probability of materials under cyclic loads and fractures pattern was observed by scanning electron microscopy. (C) 2010 Published by Elsevier Ltd.
机译:纤维增强的聚合物复合材料已被广泛应用于航空领域。但是,鉴于严格的要求以及可能的环境污染,应避免使用未锁模的复合工艺。为了生产满足航空可重复性和低成本标准的高性能结构框架,巴西工业界已考虑将树脂传递模塑工艺(RTM)视为一种闭模压力注射系统,以实现更快的凝胶和固化时间,因此有研究兴趣。由于纤维复合材料具有各向异性和非均质性,因此疲劳行为是一种复杂的现象,与金属材料完全不同,考虑到航空应用,金属材料是至关重要的。根据ASTM 3039 D生产中模量碳纤维非卷曲多轴增强材料和环氧单组分系统复合材料的疲劳子尺度试样。按照ASTM D 3479进行轴向疲劳试验。正弦载荷为10 Hz频率和负载比R = 0.1。观察到NCF / RTM6复合材料具有较高的疲劳间隔。用威布尔统计分析法描述材料在循环载荷下的破坏概率,并通过扫描电子显微镜观察其断裂模式。 (C)2010由Elsevier Ltd.出版

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