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A further generalized thickness-dependent non-Fickian moisture absorption model using plain woven epoxy composites

机译:使用普通编织环氧复合材料的进一步推广厚度依赖性非FICKIAN吸湿模型

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摘要

Mechanical performance of composite material is widely known to be susceptible to moisture attack. In order to determine the extent of moisture attack, the paper aims to generalize a thickness-dependent moisture absorption model for fiber reinforced composites. For this study, moisture absorption tests were conducted for woven glass/epoxy (2-ply and 6-ply) and woven carbon/epoxy (4-ply and 6-ply) composites, submerged in distilled water at 60 degrees C up to 94 days. From the measured moisture uptake behavior of the tested materials, a correlation function, linking normalized non-Fickian parameters and normalized laminate thicknesses, was derived to describe moisture absorption behavior of the tested composite materials using fictitious Fickian curve. To characterize non-Fickian moisture absorption behavior of composite materials, the derived correlation function suggested that only two arbitrary materials with different laminate thicknesses would suffice. Such correlation function could prove to ease the characterization of thickness-dependent non-Fickian moisture uptake behavior of fiber reinforced composites.
机译:众所周知,复合材料的机械性能易于湿润攻击。为了确定水分攻击程度,纸张旨在概括纤维增强复合材料的厚度依赖性吸湿模型。对于该研究,对编织玻璃/环氧(2-PLY和6-层)进行吸湿性测试,并编织碳/环氧(4-层和6层)复合材料,在60℃下浸没在蒸馏水中,高达94天。从测试材料的测量水分吸收行为来看,衍生出相关函数,连接标准化的非Fickian参数和归一化层压厚度,以描述使用虚拟Fickian曲线的测试复合材料的吸湿性行为。为了表征复合材料的非Fickian吸湿行为,衍生的相关函数表明,只有两个具有不同层压材料厚度的任意材料就足够了。这种相关函数可以证明是纤维增强复合材料的厚度依赖性非Fickian吸收行为的表征。

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