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Physical Properties of Water-Blown Rigid Polyurethane Foams Containing Epoxidized Soybean Oil in Different Isocyanate Indices

机译:不同异氰酸酯含量指数的含环氧大豆油的硬质聚氨酯发泡泡沫的物理性能

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摘要

To explore the potential of isocyanate usage reduction, water-blown rigid polyurethane foams were made by replacing 0, 20, and 50% of Voranoll (R) 490 in the B-side of the foam formulation by epoxidized soybean oil (ESBO) with an isocyanate index ranging from 50 to 110. The compressive strength, density, and thermal conductivity of foams were measured. The foam surface temperature was monitored before and throughout the foaming reaction as an indirect indication of the foaming temperature. Increasing ESBO replacement and/or decreasing isocyanate index decreased the foam's compressive strength. The density of the foam decreased while decreasing the isocyanate index to 60. Further decrease in isocyanate index resulted in foam shrinkage causing a sharp increase in the foam density. The thermal conductivity of foams increased while decreasing the isocyanate index and increasing the ESBO replacement. Mathematical models for predicting rigid polyurethane foam density, compressive strength, and thermal conductivity were established and validated. Similar to compressive strength, the foaming temperature decreased while decreasing the isocyanate index and increasing the ESBO replacement. Because of the lower reactivity of ESBO with isocyanate, the rate of foaming temperature decrease with decreasing isocyanate index was in the order of 0% > 20% > 50% ESBO replacement. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci 114: 2577-2583, 2009
机译:为了探索减少异氰酸酯用量的潜力,通过用环氧大豆油(ESBO)代替泡沫配方B侧的0%,20%和50%的Voranoll(R)490,来制得水发泡硬质聚氨酯泡沫。异氰酸酯指数范围为50至110。测量了泡沫的压缩强度,密度和导热系数。在发泡反应之前和整个发泡反应期间监测泡沫表面温度,作为发泡温度的间接指示。增加ESBO替代量和/或降低异氰酸酯指数会降低泡沫的抗压强度。泡沫的密度降低,同时异氰酸酯指数降低至60。异氰酸酯指数的进一步降低导致泡沫收缩,从而导致泡沫密度急剧增加。泡沫的热导率增加,同时降低了异氰酸酯指数并增加了ESBO替代量。建立并验证了预测硬质聚氨酯泡沫密度,抗压强度和导热系数的数学模型。与抗压强度相似,发泡温度降低,同时降低异氰酸酯指数并增加ESBO替代量。由于ESBO与异氰酸酯的反应性较低,发泡温度随异氰酸酯指数的降低而降低的速率约为0%> 20%> 50%ESBO替代。 (C)2009 Wiley Periodicals,Inc. J Appl Polym Sci 114:2577-2583,2009

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