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Nanoclay-modified rigid polyurethane foam

机译:纳米粘土改性硬质聚氨酯泡沫

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摘要

Montmorillonite-based organoclay was incorporated into rigid polyurethane foams. Clay was dispersed first in the isocyanate component ultrasonically. The dispersion was investigated using small angle X-ray scattering and rheology. It was found that using toluene as common solvent enhanced dispersion significantly. The addition of 1 wt% clay resulted in reduced cell size from 0.40 to 0.28 mm and increased cell number density on 300-index foams. Gas chromatography showed that diffusion of blowing agent out of the closed cells of the foam decreased by more than 82% with clay loading. The reduction in permeability is caused by the combined effect of smaller cell size and dispersed nanoclay acting as diffusion barrier. At 1% clay no mechanical strength improvements were observed. Higher levels of clay loading caused significant viscosity increase and a yield stress that made mixing the reactive components difficult.
机译:将蒙脱土基有机粘土掺入硬质聚氨酯泡沫中。首先将粘土超声分散在异氰酸酯组分中。使用小角度X射线散射和流变学研究分散体。发现使用甲苯作为普通溶剂显着提高了分散性。添加1 wt%的粘土可使泡孔尺寸从0.40毫米减小到0.28毫米,并增加300指数泡沫的泡孔数密度。气相色谱法表明,随着粘土含量的增加,发泡剂从泡沫闭孔中的扩散减少了82%以上。渗透率的降低是由较小的泡孔尺寸和分散的纳米粘土作为扩散阻挡层的综合作用引起的。粘土含量为1%时,未观察到机械强度的提高。较高的粘土负载量导致粘度显着增加和屈服应力,这使得难以混合反应性组分。

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