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首页> 外文期刊>Journal of Materials Science >Effect of moisture absorption on the micromechanical behavior of carbon fiber/epoxy matrix composites
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Effect of moisture absorption on the micromechanical 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微机械性能的影响

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摘要

Carbon fiber/epoxy material in the form of a single fiber unidirectional composite was subjected to controlled humidity environments. Moisture uptake in polymer composites has significant effects on the mechanical properties of the matrix as well as on the final performance of the composite material. Diminishing of the mechanical properties of the matrix is attributed to a decrease of its glass transition temperature (T_g). The quality of the fiber-matrix interphase was assessed using the single fiber fragmentation test and the fiber-fragment length, considered as an indicator of interfacial quality. In o der to measure the fiber fragment lengths and indentify failure mechanism at the interface optical observation and acoustic emission technique were used. The speed of propagation of an acoustic wave in the material was also determined. A comparison is made of interfacial shear strength values determined by acoustic emission and optical techniques. Excellent agreement between the two techniques was obtained. By means of a micromechanical model, it was possible to determine from the fragmentation lengths a measure of the interfacial shear strength between the fiber and the matrix. The role of moisture uptake swelling of the matrix on the residual stresses is considered to be important when considering the effect deterioration of interfacial shear properties. Both the contribution of the radial stresses and the mechanical component of fiber- matrix adhesion are seen to decrease rapidly for higher moisture contents in the matrix and/or interface.
机译:将单纤维单向复合材料形式的碳纤维/环氧树脂材料置于受控的湿度环境中。聚合物复合材料中的水分吸收对基质的机械性能以及复合材料的最终性能都有重要影响。基质机械性能的降低归因于其玻璃化转变温度(T_g)的降低。使用单纤维断裂测试和纤维碎片长度(被视为界面质量的指标)评估了纤维-基质中间相的质量。为了测量纤维碎片的长度,并在界面处使用光学观察和声发射技术来确定失效机理。还确定了声波在材料中的传播速度。对通过声发射和光学技术确定的界面剪切强度值进行了比较。两种技术之间获得了极好的一致性。通过微力学模型,可以从碎裂长度确定纤维和基质之间的界面剪切强度的量度。当考虑界面剪切特性的影响恶化时,认为基质的水分吸收溶胀对残余应力的作用很重要。对于基体和/或界面中较高的水分含量,径向应力的贡献和纤维基体粘合的机械成分均会迅速降低。

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