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首页> 外文期刊>Polymer Degradation and Stability >Hygrothermal aging effects on fatigue of glass fiber/polydicyclopentadiene composites
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Hygrothermal aging effects on fatigue of glass fiber/polydicyclopentadiene composites

机译:湿热老化对玻璃纤维/聚二环戊二烯复合材料疲劳的影响

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摘要

We investigated the effects of hygrothermal aging on the tension-tension fatigue behavior of unidirectional (UD) glass/polydicyclopentadiene (pDCPD) composites. Samples were immersed in deionized (DI) water and salt water, and glass/epoxy composites were used as a benchmark for comparison. Composites of pDCPD showed less water uptake and superior fatigue performance compared to similarly aged epoxy composites, a distinction attributed to the intrinsic hydrophobicity of the pDCPD resin. Superior fiber-matrix interface adhesion in pDCPD composites accounted for the greater strength retention after aging. Degradation of fiber and interface were coupled but not synchronous: glass fiber degradation was determined by aging time, while interface degradation depended primarily on moisture level. Salt water influenced the amount of water absorption, but no salt water corrosion was observed for either composite.
机译:我们研究了湿热老化对单向(UD)玻璃/聚二环戊二烯(pDCPD)复合材料的拉伸-拉伸疲劳行为的影响。将样品浸入去离子(DI)水和盐水中,并将玻璃/环氧树脂复合材料用作比较基准。与类似老化的环氧复合材料相比,pDCPD复合材料显示出更少的吸水率和优异的疲劳性能,这归因于pDCPD树脂的固有疏水性。 pDCPD复合材料中优异的纤维-基体界面粘合力使老化后的强度保持率更高。纤维和界面的降解是耦合的,但不是同步的:玻璃纤维的降解取决于老化时间,而界面的降解主要取决于水分含量。盐水会影响吸水量,但两种复合材料均未观察到盐水腐蚀。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2014年第12期|464-472|共9页
  • 作者单位

    Gill Composites Center, Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA;

    Gill Composites Center, Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA;

    Gill Composites Center, Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA;

    Gill Composites Center, Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polymer-matrix composites (PMCs); Environmental degradation; Fatigue; Acoustic emission;

    机译:聚合物基复合材料(PMC);环境恶化;疲劳;声发射;

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