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首页> 外文期刊>Journal of Materials Science >Characterization of rigid polyurethane foams containing microencapsulated Rubitherm® RT27: catalyst effect. Part II
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Characterization of rigid polyurethane foams containing microencapsulated Rubitherm® RT27: catalyst effect. Part II

机译:含微胶囊Rubitherm ® RT27的硬质聚氨酯泡沫的表征:催化作用。第二部分

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Catalyst Tegoamin 33 has been used for the synthesis of rigid polyurethane (RPU) foams containing microencapsulated Rubitherm® RT27 and having a high mechanical resistance. These materials could be employed in buildings for thermal insulation and thermal energy storage (TES). The fillers content influence on the foaming process and also the foam properties was evaluated. It was observed that a foam containing up to a 18 wt% of microcapsules can be manufactured, improving the TES capacity while maintaining the mechanical properties of the neat foam. Besides, it was observed that the mechanical resistance of foams synthesized using catalyst Tegoamin 33 are higher than those obtained when catalyst Tegoamin BDE was employed, with the mechanical resistance of the foam containing 21 wt% being higher than those of foams synthesized with catalyst BDE containing only 11 wt% of fillers while maintaining the advantages of an improvement in TES capacity. A general model of reaction curve of n tank-in-series of a same time constant was used to fit the rising curves. This model allowed to predict the final volume of the synthesized foam. Finally, TES capacities and mechanical properties of the synthesized foams were in the range of those reported in literature. Moreover, foam densities satisfied the restriction established by the Spanish regulation for building applications.
机译:催化剂Tegoamin 33已用于合成含有微囊化Rubitherm®RT27且具有较高机械耐受性的硬质聚氨酯(RPU)泡沫。这些材料可用于建筑物的隔热和热能存储(TES)。填料含量对发泡过程的影响,并且还评估了泡沫性质。观察到可以制造包含至多18wt%的微胶囊的泡沫,从而在保持纯泡沫的机械性能的同时提高了TES容量。此外,观察到,使用催化剂Tegoamin 33合成的泡沫的机械抗性比使用催化剂Tegoamin BDE时获得的泡沫的机械抗性高,其中含有21wt%的泡沫的机械抗性比使用含有催化剂BDE的合成的泡沫的机械抗性高。仅填充11 wt%的填料,同时保持TES容量提高的优势。使用n个串联的,具有相同时间常数的串联反应曲线的通用模型来拟合上升曲线。该模型可以预测合成泡沫的最终体积。最后,合成泡沫的TES容量和机械性能在文献报道的范围内。此外,泡沫密度满足了西班牙法规对建筑应用的限制。

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