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Thermal and rheological behavior of PEG-based nanocomposites: Effect of filler aspect ratio and size

机译:PEG基纳米复合材料的热性和流变行为:填料纵横比和尺寸的影响

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In this work, polyethylene glycol (PEG) nanocomposites containing different nanofillers (namely boehmites and hydrotalcites) were prepared through melt compounding and their thermal and rheological behavior was thoroughly investigated. The obtained results showed that the two types of nanofillers interact in a different way with the polymer matrix; more specifically, the rheological analyses performed on the systems containing hydrotalcites revealed that the presence of well-dispersed nanofillers strongly affects the relaxation dynamics of the PEG macromolecular chains, resulting in a modification of the rheological functions of unfilled matrix. Furthermore, the nanocomposites containing higher loadings of organo-modified hydrotalcite exhibit an unusual rheological behavior as a function of temperature, showing an enhancement of the linear viscoelastic functions along with a more important solid-like feature with increasing the temperature. Finally, the thermo-oxidative stability of the obtained nanocomposites was enhanced in the presence of boehmites and unmodified hydrotalcite, while the high organic fraction content in modified hydrotalcite promoted an anticipated degradation of the polymer matrix.
机译:在这项工作中,通过熔融配合制备含有不同纳米填料(即勃姆矿石和水滑石)的聚乙二醇(PEG)纳米复合材料,并彻底研究了它们的热和流变行为。得到的结果表明,两种类型的纳米填充物以不同的方式与聚合物基质相互作用;更具体地,在含有水滑石的系统上进行的流变分析表明,井分散的纳米填充物的存在强烈影响PEG大分子链的弛豫动态,导致未填充基质的流变功能的改变。此外,含有较高载荷的有机修饰的水滑石的纳米复合材料表现出作为温度的函数的不寻常的流变行为,显示线性粘弹性功能的增强以及具有增加温度的更重要的固体特征。最后,在勃姆矿石和未改进的水滑石的存在下,增强了所得纳米复合材料的热氧化稳定性,而改性水滑石的高有机馏分含量促进了聚合物基质的预期降解。

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