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首页> 外文期刊>European Polymer Journal >Influence of silica aerogel particles on the foaming process and cellular structure of rigid polyurethane foams
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Influence of silica aerogel particles on the foaming process and cellular structure of rigid polyurethane foams

机译:二氧化硅气凝胶颗粒对刚性聚氨酯泡沫发泡过程和细胞结构的影响

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Water blown rigid polyurethane (RPU) composite foams were produced using different concentrations of nanoporous silica aerogel micrometric powder (0.5, 1 and 3 wt%). The effect of these particles on the foaming kinetics was analysed from a physical and chemical viewpoint. On the physical side, the foaming process was studied by in-situ X-ray radioscopy. The inclusion of aerogel particles in the system delays the foam expansion and enhances the nucleation of cells. However, high amounts of these particles (3 wt%) lead to intense cell coalesce during foam evolution. On the chemical side, the reaction kinetics was investigated by in-situ FTIR spectroscopy and reaction temperature measurements. The addition of low contents of aerogel (below 3 wt%) reduces the conversion of isocyanate while favouring the generation of urethane groups, which explains the higher density of the foams with low aerogel contents. However, the foam with high contents of aerogel (3 wt%) does not change the reaction balance in comparison to the reference. Therefore, this foam presents similar expansion and density to those of the unfilled foam (Reference). Furthermore, higher reaction temperatures were reached by the reference foam during the foaming process, and higher dissipation speeds of these temperatures were detected for the foams containing aerogel with respect to those of the reference foam.
机译:使用不同浓度的纳米多孔二氧化硅气凝胶微米粉末(0.5,1和3wt%)制备水吹塑刚性聚氨酯(RPU)复合泡沫。从物理和化学观点分析了这些颗粒对发泡动力学的影响。在物理侧,通过原位X射线放射检查研究发泡过程。在系统中包含气凝胶颗粒延迟泡沫膨胀并增强细胞的成核。然而,在泡沫进化期间,大量这些颗粒(3wt%)导致强烈的细胞聚结。在化学方面,通过原位FTIR光谱和反应温度测量研究了反应动力学。加入气凝胶的低含量(低于3wt%)降低了异氰酸酯的转化,同时有利于氨基甲酸酯基团的产生,这解释了具有低气凝胶含量的泡沫的较高密度。然而,与参考文献相比,气凝胶高含量(3wt%)的泡沫不会改变反应平衡。因此,该泡沫与未填充的泡沫(参考)的膨胀和密度呈现出类似的膨胀和密度。此外,通过参考泡沫在发泡过程中达到较高的反应温度,并且对含有气凝胶的泡沫相对于参考泡沫的泡沫检测这些温度的较高的耗散速度。

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