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首页> 外文期刊>Composites Science and Technology >Influence Of Hygrothermal Environment On Thermal And Mechanical Properties Of Carbon Fiber/fiberglass Hybrid Composites
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Influence Of Hygrothermal Environment On Thermal And Mechanical Properties Of Carbon Fiber/fiberglass Hybrid Composites

机译:湿热环境对碳纤维/玻璃纤维混杂复合材料热力学性能的影响

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摘要

The absorption and diffusion of water in a carbon fiber/glass fiber hybrid composite was investigated. Water-sorption experiments, mechanical property tests and dynamic mechanical analysis (DMA) were performed after immersion in water at different temperatures for up to 32 weeks. The moisture uptake mechanism exhibited by the hybrid fiber system was determined to be more complex than the single fiber type. Weight-change profiles for the composites fitted the theoretical Fickian diffusion curve during the initial immersion time, but diverged substantially as time progressed. The shear properties and the glass transition temperature (T_g) were sensitive to the effects of hygrothermal environment, and values for both decreased with increasing water uptake. Microscopic inspection of water-soaked samples showed no cracking when the absorption was less than saturation. The thermal and mechanical properties were mostly retained (after drying), provided the moisture absorption did not exceed the saturation point.
机译:研究了碳纤维/玻璃纤维混合复合物中水的吸收和扩散。在不同温度下浸入水中长达32周后,进行吸水实验,力学性能测试和动态力学分析(DMA)。确定混合纤维系统表现出的吸湿机理比单纤维类型更为复杂。复合材料的重量变化曲线在最初的浸入时间内符合理论的Fickian扩散曲线,但随着时间的流逝而大幅度发散。剪切性能和玻璃化转变温度(T_g)对湿热环境的影响很敏感,并且两者的值都随着吸水量的增加而降低。当吸收小于饱和时,对水浸样品的显微镜检查显示没有破裂。只要吸湿量不超过饱和点,热性能和机械性能就可以保留下来(干燥后)。

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