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Polymer nanocomposites for high-temperature composite repair.

机译:聚合物纳米复合材料,用于高温复合材料修复。

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摘要

A novel repair agent for resin-injection repair of advanced high temperature composites was developed and characterized. The repair agent was based on bisphenol E cyanate ester (BECy) and reinforced with alumina nanoparticles. To ensure good dispersion and compatibility with the BECy matrix in nanocomposites, the alumina nanoparticles were functionalized with silanes. The BECy nanocomposites, containing bare and functionalized alumina nanoparticles, were prepared and evaluated for their thermal, mechanical, rheological, and viscoelastic properties.;The monomer of BECy has an extremely low viscosity at ambient temperature, which is good for processability. The cured BECy polymer is a highly cross-linked network with excellent thermal mechanical properties, with a high glass transition temperature (Tg) of 270 °C and decomposition temperature above 350 °C. The incorporation of alumina nanoparticles enhances the mechanical and rheological properties of the BECy nanocomposites. Additionally, the alumina nanoparticles are shown to catalyze the cure of BECy.;Characterization of the nanocomposites included dynamic mechanical analysis, differential scanning calorimetry, thermogravimetric analysis, rheological and rheokinetic evaluation, and transmission electron microscopy. The experimental results show that the BECy nanocomposite is a good candidate as repair agent for resin-injection repair applications.
机译:开发并表征了一种新型的用于高温高温复合材料树脂注射修复的修复剂。修补剂基​​于双酚E氰酸酯(BECy),并用氧化铝纳米颗粒增强。为了确保在纳米复合材料中良好的分散性和与BECy基质的相容性,将氧化铝纳米颗粒用硅烷官能化。制备了含有裸露的和功能化的氧化铝纳米粒子的BECy纳米复合材料,并对其热,机械,流变和粘弹性进行了评估。BECy单体在环境温度下具有极低的粘度,这对加工性能有利。固化的BECy聚合物是一种高度交联的网络,具有出色的热机械性能,玻璃化转变温度(Tg)为270°C,分解温度高于350°C。氧化铝纳米颗粒的结合增强了BECy纳米复合材料的机械和流变性能。此外,显示出氧化铝纳米颗粒可催化BECy的固化。纳米复合材料的表征包括动态力学分析,差示扫描量热法,热重分析,流变和流变动力学评估以及透射电子显微镜。实验结果表明,BECy纳米复合材料是用于树脂注射修复应用的修复剂的良好选择。

著录项

  • 作者

    Sheng, Xia.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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