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首页> 外文期刊>Journal of Composite Materials >Experimental investigation of the synergistic effects of moisture and freeze-thaw cycles on carbon fiber vinyl-ester composites
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Experimental investigation of the synergistic effects of moisture and freeze-thaw cycles on carbon fiber vinyl-ester composites

机译:碳纤维乙烯基 - 酯复合材料对水分和冻融循环协同作用的实验研究

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摘要

Carbon fiber-reinforced vinyl-ester polymer composites are increasingly used as structural members in applications (e.g., marine crafts and offshore structures) where they can be frequently exposed to the environmental elements of moisture and cold temperature fluctuations that cause freeze-thaw cycles. These harsh elements can individually and possibly synergistically damage carbon fiber-reinforced vinyl-ester composites. More importantly, their damage can accumulate over time and significantly degrade the structural properties, long-term integrity and durability of carbon fiber-reinforced vinyl-ester composites. This work experimentally investigates the individual and cooperative degrading effects of moisture and freeze-thaw cycles on the structural properties of carbon fiber-reinforced vinyl-ester composites, particularly on their flexural stiffness and strength. Results show that the combined damaging effects of moisture and freeze-thaw cycles are more significant than their individual effects, confirming the synergy between the damage mechanisms of the two elements.
机译:碳纤维增强乙烯基 - 酯聚合物复合材料越来越多地用作应用中的结构构件(例如,海洋工艺品和海上结构),在那里它们可以经常暴露于导致冻融循环的水分和寒冷温度波动的环境元素。这些苛刻的元素可以单独且可能协同损伤碳纤维增强乙烯基酯复合材料。更重要的是,它们的损伤可以随着时间的推移积累并显着降低碳纤维增强乙烯基 - 酯复合材料的结构性,长期完整性和耐久性。这项工作通过实验研究了水分和冻融循环对碳纤维增强乙烯基酯复合材料的结构性质的个体和协作降解影响,特别是在它们的抗弯刚度和强度上。结果表明,水分和冻融周期的综合损害效应比其个体效应更重要,确认了两个元素的损伤机制之间的协同作用。

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