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FTIR study of ageing epoxy resin reinforced by reactive graphitic nanofibers

机译:活性石墨纳米纤维增强老化环氧树脂的FTIR研究

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We previously developed a novel modified epoxy matrix for macrocomposites using reactive graphitic nanofibers (r-GNFs), which showed improved mechanical properties. This article is devoted to study the efficacy of the r-GNFs against the damage due to exposition of the matrix to hygrothermal environment and UV radiation. Moisture sorption characteristics of the pure epoxy and nanoepoxy were investigated and all kinds of matrices showed similar absorption behavior. Both diffusion and relaxation processes in sorption were observed. DSC curves of nonaged specimens of all concentrations confirmed that samples were not fully cured and r-GNFs lowered the curing degree. The effects of ageing were studied through the changes of molecular conformation by Fourier Transform infrared spectroscopy (FTIR). The results show that UV radiation assists in post-curing of the matrices. Hydroxyl unit, carbonyl unit, and epoxide unit were chosen to study the degradation. It is observed that the degradation due to UV radiation is more severe compared with that due to hygrothermal expose. It also reveals that r-GNFs resist the degradation of the epoxy resin; particularly, the nanoepoxy with 0.3 wt % of r-GNFs has the highest ageing resistance, which is in agreement with our previously tested results of mechanical properties. (c) 2007 Wiley Periodicals, Inc.
机译:我们以前使用反应性石墨纳米纤维(r-GNFs)开发了一种新型的用于大型复合材料的改性环氧树脂基体,该基体具有改善的机械性能。本文致力于研究r-GNF对抗由于基质暴露于湿热环境和紫外线辐射而造成的损害的功效。研究了纯环氧和纳米环氧的吸湿特性,各种基质均表现出相似的吸收行为。观察到吸附过程中的扩散和松弛过程。所有浓度的未老化样品的DSC曲线证实样品未完全固化,而r-GNFs降低了固化度。通过傅立叶变换红外光谱(FTIR)通过改变分子构象研究了老化的影响。结果表明,紫外线辐射有助于基质的后固化。选择羟基单元,羰基单元和环氧化物单元来研究降解。观察到,与湿热暴露相比,由于紫外线辐射引起的降解更为严重。这也表明,r-GNFs可以抵抗环氧树脂的降解。特别地,具有0.3 wt%的r-GNF的纳米环氧树脂具有最高的耐老化性,这与我们先前测试的机械性能结果相符。 (c)2007年Wiley Periodicals,Inc.

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