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Preparation and Characterization of Flexible Polyurethane Foams from Palm Oil-Based Polyol

机译:棕榈油基多元醇柔性聚氨酯泡沫的制备与表征

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Flexible polyurethane (PU) foams were prepared by replacing commercial petroleumbased polyether polyol with palm oil-based polyol up to 50 wt%. Palm oil was converted to polyol by transesterification reaction with glycerol using calcium oxide as a catalyst. PU foams were then prepared from reaction between mixtures of palm oil-based polyol and petrochemical polyols with toluene diisocyanate (TDI) using water as blowing agent. The morphology and physical-mechanical properties including apparent density, indentation hardness, compressive deflection coefficient or support factor, tensile strength, and tear strength of the prepared foams were characterized and compared to those of reference foam prepared using only conventional petrochemical polyols. Scanning electron microscopy (SEM) indicated that the cellular structures of all the prepared foams were semi-open and the cell size decreased with higher amount of palm oil-based polyol. The apparent densities and the compressive deflection coefficient of the PU foams increased with the increasing amount of palm oil-based polyol, while the indentation hardness showed the opposite tendency. Furthermore, the obtained foam modified with palm oil-based polyol of 20 wt% were found to have the highest tensile and tear strengths.
机译:通过用棕榈油基多元醇替换商业石油覆盖的聚醚多元醇,柔性聚氨酯(PU)泡沫制备高达50wt%。使用氧化钙作为催化剂,通过与甘油的酯交换反应将棕榈油转化为多元醇。然后使用水作为发泡剂的甲苯二异氰酸酯(TDI)在棕榈油基多元醇和石化多元醇的混合物之间制备PU泡沫。包括表观密度,压痕硬度,压缩挠度系数或支撑因子,拉伸强度和撕裂强度的形态和物理 - 机械性能的特征在于并与仅使用常规石化多元醇制备的参考泡沫相比。扫描电子显微镜(SEM)表明所有制备的泡沫的细胞结构半开,细胞尺寸随着棕榈油基多元醇的较高量降低。 PU泡沫的表观密度和压缩偏转系数随着棕榈油类多元醇的增加而增加,而压痕硬度显示出相反的趋势。此外,发现用20wt%的棕榈油基多元醇改性所得泡沫具有最高的拉伸和撕裂强度。

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