首页> 外文期刊>Journal of Applied Polymer Science >Noncatalytic Polymerization of Ethylene Glycol and Epoxy Molecules for Rigid Polyurethane Foam Applications
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Noncatalytic Polymerization of Ethylene Glycol and Epoxy Molecules for Rigid Polyurethane Foam Applications

机译:乙二醇和环氧分子的非催化聚合在硬质聚氨酯泡沫应用中的应用

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The study investigated an approach to incorporate modified epoxidized soy-based vegetable oil polyol as a replacement for petroleum-based polyether polyol and to substantially reduce the isocyanate loading in the rigid foam formulation. Noncatalytic polymerization of epoxidized bodied soybean oil and ethylene glycol (EG) was carried out in a closed batch reaction. Cleavage of the oxirane rings and hydroxyl group attachment at optimum conditions provided the desired polyol products. The polyols were characterized based on its hydroxyl numbers, acidity, viscosity, iodine number, and Gardner color index for quality purposes. Reactions of oxirane ring and EG were verified by spectroscopic FTIR. Crosslinking performance was evaluated by extractability analysis on the polyurethane (PU) elastomer wafers. Rigid foaming performed at 50 and 75% petroleum-based polyether polyol replacements have shown excellent thermoinsulating and mechanical properties compared with epoxidized soybean oil (ESBO) alone or petroleum-based polyether polyol alone. A reduction of up to 8% of the polymeric diphenylmethane diisocyanate was achieved using the synthesized ESBOEG- based polyols. A higher average functionality polyol is key component to the reduction of isocyanate in PU synthesis.
机译:该研究研究了一种方法,将改性的环氧化大豆基植物油多元醇掺入石油基聚醚多元醇的替代品,并显着降低硬质泡沫配方中的异氰酸酯含量。环氧化的豆油和乙二醇(EG)的非催化聚合是在封闭的间歇反应中进行的。在最佳条件下,环氧乙烷环的裂解和羟基的连接提供了所需的多元醇产物。为了质量目的,基于多元醇的羟值,酸度,粘度,碘值和加德纳色指数来表征多元醇。通过光谱FTIR证实环氧乙烷环与EG的反应。交联性能通过对聚氨酯(PU)弹性体晶片的萃取性分析进行评估。与单独的环氧化大豆油(ESBO)或单独的石油基聚醚多元醇相比,在50%和75%的石油基聚醚多元醇替代品中进行的刚性发泡显示出优异的绝热和机械性能。使用合成的基于ESBOEG的多元醇,最多可减少8%的聚合二苯基甲烷二异氰酸酯。较高平均官能度的多元醇是PU合成中异氰酸酯还原的关键组分。

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