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首页> 外文期刊>Composites Part A: Applied Science and Manufacturing. >Hygrothermal effects on high V_F pultruded unidirectional carbon/epoxy composites: Moisture uptake
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Hygrothermal effects on high V_F pultruded unidirectional carbon/epoxy composites: Moisture uptake

机译:对高V_F拉挤单向碳/环氧树脂复合材料的湿热效应:水分吸收

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摘要

Moisture uptake and desorption response of a high fiber volume fraction pultruded carbon/epoxy composite is studied through immersion of specimens in deionized water at three temperatures. It is seen that uptake response is best characterized by a two-stage model indicating an initial diffusion based response followed by a relaxation and deterioration based response. Desorption and short-term resorp-tion responses are Fickian in nature and show the clear effect of prior history. The ratios of longitudinal to transverse diffusivity of desorption indicate a decrease with increasing level of initial temperature of immersion in deionized water. These values are significantly higher than those listed in the literature for lower fiber volume fraction composites, and are attributed to the high levels of fiber loading, with local areas of fiber-to-fiber contact. Viscoelastic characterization through dynamic mechanical thermal analysis clearly differentiates between plasticization and further network/interface deterioration based phenomena.
机译:通过在三个温度下将样品浸入去离子水中,研究了高纤维体积分数的拉挤碳/环氧树脂复合材料的水分吸收和解吸响应。可以看出,吸收反应最好通过两阶段模型来表征,该模型表明了基于初始扩散的反应,然后是基于松弛和劣化的反应。解吸和短期吸收反应本质上是菲克式的,显示出先前病史的明显作用。解吸的纵向扩散率与横向扩散率之比表明,随着去离子水中浸泡初始温度的升高而降低。这些值明显高于文献中列出的较低纤维体积分数的复合材料,并且归因于较高的纤维负载量以及局部纤维与纤维接触的情况。通过动态机械热分析进行的粘弹性表征可以清楚地区分增塑和其他基于网络/界面劣化的现象。

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