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Effects of Organoclay on the Thermal Insulating Properties of Rigid Polyurethane Foams Blown by Environmentally Friendly Blowing Agents

机译:有机粘土对环保型发泡剂吹制的硬质聚氨酯泡沫的隔热性能的影响

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A process designed to synthesize rigid polyurethane foam (PUF) with insulative properties via the modulation of PUF cell size via the addition of clay and the application of ultrasound was assessed. The blowing agents utilized in this study include water, cyclopentane, and HFC-365mfc, all of which are known to be environmentally-friendly blowing agents. The rigid PUFs were prepared from polymeric 4,4'-diphenylmethane diisocyanate (PMDI) and polyether polyol with a density of 50 kg/m~3. In addition, rigid PUFs/clay nanocomposites were synthesized with clay modified by PMDI with and without the application of ultrasound. The PUF generated using water as a blowing agent evidenced the highest tensile strength. The tensile strength of the PUFanocomposites was higher than that of the neat PUF and the strength was even higher with the application of ultrasound. The cell size of the PUF/clay nanocomposites was less than that of the neat PUF, regardless of the type of blowing agent utilized. It appears that the higher tensile strength and lower cell size of the PUF/clay nanocomposites may be attributable to the uniform dispersion of the clay via ultrasonic agitation. The thermal conductivity of the PUF/clay nanocomposites generated with HCFC-141b evidenced the lowest value when PUF/clay nanocomposites were compared with other blowing agents, including HFC-365mfc, cyclopentane, and water. Ultrasound has also proven effective with regard to the reduction of the thermal conductivity of the PUF/clay nanocomposites with any of the blowing agents employed in this study. It has also been suggested that the uniformly dispersed clay particles in the PUF matrix function as diffusion barriers, which prevent the amelioration of the thermal insulation property.
机译:评估了一种通过添加黏土和施加超声波来调节PUF孔尺寸来合成具有绝缘性能的硬质聚氨酯泡沫(PUF)的方法。本研究中使用的发泡剂包括水,环戊烷和HFC-365mfc,所有这些发泡剂均已知为环保型发泡剂。刚性PUF由聚合的4,4'-二苯基甲烷二异氰酸酯(PMDI)和密度为50 kg / m〜3的聚醚多元醇制备。另外,在有或没有超声波的情况下,用PMDI改性的粘土合成了硬质PUF /粘土纳米复合材料。使用水作为发泡剂生成的PUF具有最高的拉伸强度。 PUF /纳米复合材料的拉伸强度高于纯PUF,并且在施加超声波的情况下甚至更高。无论使用哪种发泡剂,PUF /粘土纳米复合材料的泡孔尺寸均小于纯PUF。看来,PUF /粘土纳米复合材料的较高的拉伸强度和较小的孔尺寸可归因于通过超声搅拌使粘土均匀分散。当将PUF /粘土纳米复合材料与其他发泡剂(包括HFC-365mfc,环戊烷和水)进行比较时,用HCFC-141b生成的PUF /粘土纳米复合材料的导热系数最低。在使用本研究中使用的任何发泡剂降低PUF /粘土纳米复合材料的导热性方面,超声波也被证明是有效的。还已经提出,PUF基体中均匀分散的粘土颗粒起扩散阻挡层的作用,这阻碍了隔热性能的改善。

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