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Initiation of structural defects in carbon fiber reinforced polymer composites under hygrothermal environments

机译:湿热环境下碳纤维增强聚合物复合材料结构缺陷的引发

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摘要

Exposure to hygrothermal environments affects mechanical properties of laminated composites through two principle mechanisms, namely, moisture absorption and the structural deterioration due to it. Previous studies have indicated that moisture plays a positive role in carbon fiber reinforced polymer composites by alleviating their damage under impact. In this study, carbon fiber reinforced polymer composites were exposed to long-term hygrothermal ageing to investigate the possibility of the initiation of structural defects due to it and their influences on the various behaviors of the laminated composites. A major type of observable structural defects was identified and the related initiation mechanism was proposed. It was found for the first time that the structural defects formed during hygrothermal ageing in turn changed the moisture uptake profile of the laminated composites. The effects of structural defects on the impact resistance of carbon fiber reinforced polymer composites were exclusively evaluated after removing the absorbed moisture. Tensile testing on vacuum-oven-dried laminates was conducted to assist the understanding of the mechanical strength of the carbon fiber reinforced polymer composites exposed to the hygrothermal environments.
机译:暴露于湿热环境下会通过两种主要机理影响层压复合材料的机械性能,即吸湿和由于吸湿引起的结构劣化。先前的研究表明,水分可减轻碳纤维增强聚合物复合材料在冲击下的破坏,从而发挥积极作用。在这项研究中,碳纤维增强的聚合物复合材料经受了长期的湿热老化,以研究由此引发结构缺陷的可能性及其对层压复合材料各种性能的影响。确定了主要类型的可观察到的结构缺陷,并提出了相关的引发机制。首次发现在湿热老化过程中形成的结构缺陷反过来改变了层压复合材料的吸湿特性。去除吸收的水分后,专门评估了结构缺陷对碳纤维增强聚合物复合材料耐冲击性的影响。对真空烘箱干燥的层压板进行了拉伸测试,以帮助理解暴露在湿热环境下的碳纤维增强聚合物复合材料的机械强度。

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