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Effect of moisture absorption on the mechanical behavior of carbon fiber/epoxy matrix composites

机译:吸水率对碳纤维/环氧树脂基复合材料力学性能的影响

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A carbon fiber/epoxy unidirectional laminated composite was exposed to a humid environment and the effect of moisture absorption on the mechanical properties and failure modes was investigated. The composites were exposed to three humidity conditions, namely, 25, 55, and 95 % at a constant temperature of 25 C. The carbon fiber-epoxy laminated composites for two different carbon fiber surface treatments were used. The results showed that the mechanical properties differ considerably for each fiber surface treatment. The application of a coupling agent enhanced the fiber-matrix adhesion and reduced dependence of the properties on humidity. The damage mechanism observed at micromechanical level was correlated to acoustic emission signals from both laminated composites. The untreated carbon fiber failure mode was attributed to fiber-matrix interfacial failure and for the silane-treated carbon fiber reinforced epoxy laminate attributed to matrix yielding followed by fiber failure with no signs of fiber-matrix interface failure for moisture contents up to 1.89 %. ? 2012 Springer Science+Business Media New York.
机译:将碳纤维/环氧树脂单向层压复合材料暴露在潮湿环境中,研究了吸湿对机械性能和破坏模式的影响。将该复合物在25℃的恒定温度下暴露于25%,55%和95%的三种湿度条件。使用了用于两种不同碳纤维表面处理的碳纤维-环氧树脂层压复合物。结果表明,每种纤维表面处理的机械性能差异很大。偶联剂的应用增强了纤维基质的粘合力,并降低了性能对湿度的依赖性。在微机械水平上观察到的损伤机理与两种层压复合材料的声发射信号相关。未处理的碳纤维破坏模式归因于纤维-基体界面破坏,而硅烷处理的碳纤维增强环氧层压板归因于基体屈服,其次是纤维破坏,对于水分含量高达1.89%则没有纤维-基体界面破坏的迹象。 ? 2012年Springer Science + Business Media纽约。

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