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环境老化对CF/VE拉挤复合材料动态力学性能的影响

Effect of Environmental Ageing on Dynamic Mechanical Properties of Pultruded Carbon Fiber/Vinyl Ester Resin Composites

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【作者】 于运花周同悦王莉莉杨小平刘鸿亮

【Author】 YU Yun-hua1,ZHOU Tong-yue1,WANG Li-li1,2YANG Xiao-ping1,Liu Hong-liang3(1.The Key Laboratory of Beijing City on Preparation and Processing of NovelPolymer,Beijing University of Chemistry and Technology,Beijing 100029,China;2.Beijing FRP Research & Design Institute,Beijing 102101,China;3.China Academe of Environmental Science,Beijing 100012,China)

【机构】 北京化工大学北京市新型高分子材料制备与加工重点实验室中国环境科学研究院 北京100029北京100029北京玻璃钢研究设计院北京102101北京100012

【摘要】 采用动态力学热分析(DMTA),研究了炭纤维/乙烯基酯树脂(CF/VE)拉挤复合材料在65℃蒸馏水和3%NaCl、5%H2SO4及10%NaOH水溶液中浸泡不同时间及重新干燥后,其动态力学损耗(tanδ)和玻璃化转变温度(Tg)的变化。结果表明,随浸泡时间的延长,四种介质中复合材料的力学损耗均有不同幅度的递增,其中,以NaOH水溶液中的增加幅度最大,而且出现了tanδ的分峰现象;Tg在浸泡初期逐渐下降,浸泡后期,除在NaOH水溶液中出现短暂的平稳又继续下降外,其余三种介质中均趋于一稳定值。重新干燥后,NaOH水溶液中,tanδ的分峰现象消失,但因水解脆化作用导致复合材料的Tg比浸泡前偏高,其余三种介质中,不存在水解反应,Tg均与浸泡前的相同。

【Abstract】 The changes in loss factor(tanδ) and the glass transition temperature(Tg) of pultruded carbon fiber/vinyl ester(CF/VE) resin composites were studied by dynamical mechanical thermal analysis(DMTA) during their immersion in distilled water,3%NaCl aqueous solution,5%H2SO4aqueous solution and 10%NaOH aqueous solution at 65 ℃.The results show that the loss factor of the composites in the four media increases at a various degree with immersion time,there being the largest degree of increase and a split in tanδ in 10%NaOH aqueous solution.Tgof the composites decreases at a various degree in the four media at the early immersion stage,then tends to a constant except for decreasing with the farther prolongation of immersion time in 10%NaOH aqueous solution.When re-dried,Tgof the composites in distilled water,3%NaCl and 5%H2SO4aqueous solutions nearly recovers to the same as that before immersion,but is higher in 10%NaOH aqueous solution due to the hydrolysis.

【关键词】 炭纤维复合材料损耗因子老化
【Key words】 carbon fibercompositesloss factorageing
【基金】 国家863计划资助项目(2004AA33G140);中石化科技发展项目(P03066)
  • 【文献出处】 高分子材料科学与工程 ,Polymer Materials Science & Engineering , 编辑部邮箱 ,2007年06期
  • 【分类号】TQ320
  • 【被引频次】5
  • 【下载频次】186
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