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Effects of silicone surfactant on the water absorption and surface morphology of rigid palm oil-based polyurethane foam

机译:硅氧烷表面活性剂对硬质棕榈油基聚氨酯泡沫塑料吸水率和表面形貌的影响

摘要

Polyurethane (PU) foams are widely used today in automotive and as insulation system. Due to environmental issues, efforts have been made to replace petrochemical polyol with natural-based polyol in PU foam production, without sacrificing any properties. This study aims to produce palm oil-based PU rigid foam for non-load bearing applications such as wall panel or insulation for buildings. Two parameters studied were percentage of water uptake and surface foam morphology. Palm oil-based polyol (POP) was reacted with polymeric 4,4-diphenylmethane diisocyanate (p-MDI) at 1:1 NCO:OH ratio. Water was used as blowing agent and silicone surfactant was added to produce stable rigid PU foam. The content of silicone surfactant was varied at 2 and 3 part by weight (pbw). The percentage of water uptake increased slightly with increasing surfactant contents due to siloxane portion of the surfactants, is thought able to reduce the surface tension of the cell, thus absorbing more water than 2 pbw surfactant content. The findings were supported with micrographs of scanning electron microscope (SEM) that showed a larger cell window area and thicker strut.
机译:如今,聚氨酯(PU)泡沫广泛用于汽车和绝缘系统中。由于环境问题,已努力在不牺牲任何性能的情况下用天然基多元醇代替石油化学多元醇。这项研究旨在生产用于非承重应用的棕榈油基PU硬质泡沫塑料,例如墙板或建筑物的隔热材料。研究的两个参数是吸水率和表面泡沫形态。使棕榈油基多元醇(POP)与聚合物4,4-二苯基甲烷二异氰酸酯(p-MDI)以1:1 NCO:OH的比例反应。使用水作为发泡剂,并添加有机硅表面活性剂以生产稳定的硬质PU泡沫。硅氧烷表面活性剂的含量在2和3重量份(pbw)之间变化。由于表面活性剂的硅氧烷部分,水吸收百分比随表面活性剂含量的增加而略有增加,据认为能够降低电池的表面张力,因此吸收的水多于2 pbw表面活性剂。扫描电子显微镜(SEM)的显微照片支持了这一发现,该显微照片显示出较大的细胞窗口面积和较厚的支撑。

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