采用多频温度扫描动态热机械(DMTA)方法研究了环氧树脂基碳纤维复合材料于65,95℃蒸馏水中的湿热老化性能,通过Arrhenius方程计算得到复合材料湿热老化前后的玻璃化转变表观活化能△Ea,分析了复合材料于两种温度下的吸湿性和静态力学性能变化.结果表明,不同树脂基复合材料湿热老化前后△Ea不同,随着湿热老化温度的升高,△Ea增加;湿热环境中复合材料的平衡吸湿率越低,△Ea越小;湿热老化后复合材料的力学性能保留率越低则△Ea越大.表观活化能可以用来表征树脂基复合材料的耐湿热性能.
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