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Effect of absorbed water on dynamic modulus for short fiber–CR composites

机译:吸收水分对短纤维-CR复合材料动态模量的影响

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AbstractShort fiber–elastomer composites with 10 vol fiber, nylon 6–CR and PET–CR composites, absorbed water either in the moisture atmosphere or in water. The effect of absorbed water on the viscoelastic properties for these composites was investigated. The temperature dependence of tan σ for the nylon–CR composite showed that the α‐dispersion peak of nylon shifted to lower temperatures with increasing absorbed water content and that after displacement of the α‐dispersion peak the additional small hump appeared at about 90°C. For the PET composite, the α‐dispersion peak of PET shifted slightly to lower temperatures and the small shoulder at 90°C diminished with increasing absorbed water. The additional dispersion probably was caused by the interface between fiber and CR matrix and was independent of fiber orientation. The results suggested that nylon fiber absorbed a larger amount of water than CR matrix, while the water absorption for PET fiber was considerably less than for nylon fiber. The absorbed water in nylon fiber bonded stronger than that in CR matrix and was only slightly diminished by heat tr
机译:摘要10体积%纤维、尼龙6-CR和PET-CR复合材料的短纤维-弹性体复合材料在潮湿气氛或水中均能吸收水分。研究了吸收水对这些复合材料粘弹性的影响。棕褐色σ对尼龙-CR复合材料的温度依赖性表明,随着吸收含水量的增加,尼龙的α分散峰向较低温度移动,α分散峰位移后,在90°C左右出现额外的小驼峰。 对于PET复合材料,PET的α分散峰在较低温度下略有偏移,90°C时的小肩部随着吸水量的增加而减小。额外的色散可能是由纤维和CR基体之间的界面引起的,并且与纤维取向无关。结果表明,尼龙纤维的吸水量大于CR基体,而PET纤维的吸水率远低于尼龙纤维。尼龙纤维中吸收的水分比CR基体中的吸附性更强,并且仅因热tr而略有减少。

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