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Influence of the chemical structure of rapeseed oil-based polyols on selected properties of polyurethane foams

机译:菜籽油基多元醇化学结构对聚氨酯泡沫选定性质的影响

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In this work, we report on obtaining rigid polyurethane foams with biopolyols based on rapeseed oil. The biopolyols with different functionality were synthesized in a two-stage reaction of oil epoxidation and oxirane ring opening with 1-hexanol (P_1Hex) and 1,6-hexanediol (P_1.6Hex) and their properties were characterized (Table 2, Figs. 1-3). Next, they were used to replace petrochemical polyols in foams by up to 60% by mass (Table 1). The introduction of the biopolyols into the polyurethane systems affected their reactivity (Fig. 4). The replacement of the petrochemical polyols with the biopolyols caused changes in the cell structure (Tables 3, 4) and the physical and mechanical properties of the resultant materials (Table 5).
机译:在这项工作中,我们报告了以菜籽油为基础的生物聚合物制备硬质聚氨酯泡沫。在油环氧化和环氧乙烷开环与1-己醇(P_1Hex)和1,6-己二醇(P_1.6Hex)的两阶段反应中合成了具有不同功能性的生物聚合物,并对其性质进行了表征(表2,图1-3)。接下来,他们被用来取代石油化工多元醇的泡沫高达60%的质量(表1)。将生物聚合物引入聚氨酯系统会影响其反应性(图4)。用生物聚合物替换石化多元醇导致细胞结构(表3、表4)以及合成材料的物理和机械性能(表5)发生变化。

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