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Optimization of preparation process to produce polyurethane foam made by oilseed rape straw based polyol

机译:油菜秸秆基多元醇制备聚氨酯泡沫的制备工艺优化

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Oilseed rape straw based polyol was used as substitute of petroleum based polyol and to react with pMDI for preparing bio-based polyurethane (PU) foam. The optimal foaming process was confirmed as 1.7 of NCO/OH ratio, 4% of surfactant, 1% of blowing agent and 3% of catalyst. Effects of reactants formula on foaming process, density, mechanical property, thermal property and water absorption ability are investigated. Density, compression strength and elastic modulus increased firstly then decreased with increasing of NCO/OH ratio or surfactant, decreased with increasing of blowing agent, while decreased firstly and then increased with increasing of catalyst dosage. Tg increased with NCO/OH ratio, increased firstly and then decreased with surfactant, blowing and catalyst dosage. The optimal foam appeared 38.5 kg/m(3) of density, 131.7 kPa of compression strength, 2.29 MPa of elastic modulus, uniform cellular structure with 150-250 mu m of diameter cells, 10.2 MPa of storage modulus, 200.8 degrees C of Tg, excellent water absorption ability and thermal stability. (C) 2019 Published by Elsevier Ltd.
机译:油菜籽油秸秆基多元醇被用作石油基多元醇的替代品,并与pMDI反应以制备生物基聚氨酯(PU)泡沫。确定最佳的发泡过程为:NCO / OH比为1.7,表面活性剂为4%,发泡剂为1%,催化剂为3%。研究了反应物配方对发泡过程,密度,机械性能,热性能和吸水能力的影响。随着NCO / OH比或表面活性剂的增加,密度,抗压强度和弹性模量先增加,然后降低;随着发泡剂的增加,密度,抗压强度和弹性模量先降低,然后随着催化剂用量的增加先降低后升高。 Tg随NCO / OH比的增加而增加,先随表面活性剂,起泡量和催化剂用量的增加而下降。最佳泡沫的密度为38.5 kg / m(3),抗压强度为131.7 kPa,弹性模量为2.29 MPa,孔直径为150-250μm的均匀泡孔结构,10.2 MPa的储能模量,Tg为200.8摄氏度,优良的吸水能力和热稳定性。 (C)2019由Elsevier Ltd.发布

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