聚氨酯-聚苯乙烯复合材料--发泡剂类型对发泡过程、结构和性能的影响

E. Malewska, A. Prociak, Natalia Świdzińska-Grela, M. Kurańska
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引用次数: 0

摘要

本研究采用共同膨胀法获得了聚氨酯-聚苯乙烯复合材料(RPURF-EPS)。这种方法是利用聚氨酯(PUR)形成时放热反应的热量来膨胀聚苯乙烯珠(PSB)。这些材料是使用基于所选发泡剂(如环戊烷、碳氟化合物混合物和水)的聚氨酯系统获得的。使用一种名为 FOAMAT 的特殊装置对发泡过程进行了分析。确定了起始、上升、凝胶和固化时间的特征。测量了上升曲线、反应温度、压力和介电极化。评估了所选发泡剂对参考硬质聚氨酯泡沫(RPURF)和 RPURF-EPS 的泡孔结构和物理机械性能(如表观密度、抗压强度和导热性)的影响。研究结果表明,发泡剂对复合材料的性能和结构影响最大,并能使多孔轻质复合材料中的 PSB 得到最有效的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Polyurethane-Polystyrene Composite—Influence of the Blowing Agent Type on the Foaming Process, the Structure and the Properties
In this study, polyurethane-polystyrene composites (RPURF-EPS) were obtained with the co-expansion method. This method consists of utilizing the heat of the exothermic reaction of polyurethane (PUR) formation to expand polystyrene beads (PSBs). The materials were obtained using polyurethane systems based on the selected blowing agents, such as cyclopentane, a mixture of fluorocarbons and water. The analysis of the foaming process was carried out using a special device called FOAMAT. The characteristic start, rise, gelation and curing times were defined. The rise profile, the reaction temperature, the pressure and the dielectric polarization were measured. The influence of selected blowing agents on the cell structure and physical–mechanical properties of reference rigid polyurethane foam (RPURF) and RPURF-EPS, such as apparent density, compressive strength and thermal conductivity, were evaluated. Based on the research, the blowing agents that have the most beneficial influence on the properties and structure of the composites and that provide the most efficient expansion of PSBs in a light porous composite were found.
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