首页> 外文期刊>Journal of Applied Polymer Science >Effects of liquid-type silane additives and organoclay on the morphology and thermal conductivity of rigid polyisocyanurate-polyurethane foams
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Effects of liquid-type silane additives and organoclay on the morphology and thermal conductivity of rigid polyisocyanurate-polyurethane foams

机译:液体型硅烷添加剂和有机粘土对硬质聚异氰脲酸酯-聚氨酯泡沫的形貌和导热性的影响

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摘要

This article investigates the effects of liquid-type silane additives and organoclay as a solid-type additive on the morphological, mechanical and thermal insulating properties of polyisocyanurate-polyurethane (PIR-PUR) foams. The organoclay likely acted as nucleating agents during the formation of PIR-PUR foams. When the liquid silane additives and organoclay were added, the cell size and thermal conductivity of the PIR-PUR foams appeared to be decreased. However, organoclay did not contribute to reduce the cell size distribution of the foam. PIR-PUR foams synthesized with tetramethylsilane as a liquid-type additive showed a smaller average cell size and lower thermal conductivity than that of PIR-PUR foams synthesized with the other silane additives or with organoclay as a solid-type additive. For the PIR-PUR foam with organoclay/TEMS (1.5/1.5 php) mixture, cell size and thermal conductivity of the foam showed similar to the foam with TEMS. These results suggest that smaller cell size appears to be one of the major factors in the improvement of thermal insulation properties of the PIR-PUR foams. Silane additives did not seem to have a strong effect on the flammability of the PIR-PUR foams. However, heat resistance was more dominant for the foam with the organoclay at the higher temperature.
机译:本文研究了液态硅烷添加剂和有机粘土作为固态添加剂对聚异氰脲酸酯-聚氨酯(PIR-PUR)泡沫的形态,机械和隔热性能的影响。有机粘土可能在PIR-PUR泡沫形成过程中充当成核剂。当添加液体硅烷添加剂和有机粘土时,PIR-PUR泡沫的泡孔尺寸和热导率似乎降低了。但是,有机粘土并不能减少泡沫的泡孔尺寸分布。用四甲基硅烷作为液体型添加剂合成的PIR-PUR泡沫,比用其他硅烷添加剂或有机粘土作为固体型添加剂合成的PIR-PUR泡沫,平均泡孔尺寸小,导热系数低。对于具有有机粘土/ TEMS(1.5 / 1.5 php)混合物的PIR-PUR泡沫,泡沫的泡孔尺寸和热导率显示类似于具有TEMS的泡沫。这些结果表明,较小的泡孔尺寸似乎是改善PIR-PUR泡沫的隔热性能的主要因素之一。硅烷添加剂似乎对PIR-PUR泡沫的可燃性没有强烈影响。然而,在较高温度下,具有有机粘土的泡沫的耐热性更为主要。

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