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Micro fibrillated cellulose reinforced bio-based rigid high-density polyurethane foams

机译:微纤维化纤维素增强生物基刚性高密度聚氨酯泡沫

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摘要

Rigid polyurethane foams (RPUF) are the most consumed cellular polymer in the world. Bio-based polyols are sometimes used as raw material for RPUF but with a detrimental effect on mechanical properties. In this paper, micro fibrillated cellulose (MFC) was used as a reinforcement to enhance the mechanical, thermal and dynamic mechanical properties of bio-based RPUF. A bleached Eucalyptus sp. pulp was dispersed in glycerine and then subjected to mechanical defibrillation to extract the MFC, a route that does not require dispersants or drying, which is advantageous for the MCF incorporation. The RPUF were manufactured in a closed mould in a way to obtain overpacking. The higher the overpacking degree, the higher the apparent density and stiffness of the RPUF. Also, expansion under confinement yielded more rounded polymer cells with decreased anisotropy. The MFC and overpacking acted synergistically, improving strength, stiffness, thermal stability and dynamic mechanical properties of the RPUF. Thermal conductivity of the RPUF, on the other hand, was unaffected by those factors.
机译:硬质聚氨酯泡沫塑料(RPUF)是世界上消耗量最大的多孔聚合物。生物基多元醇有时用作RPUF的原料,但对机械性能有不利影响。本文采用微纤维化纤维素(MFC)增强生物基RPUF的力学、热学和动态力学性能。将漂白的桉树纸浆分散在甘油中,然后进行机械除颤以提取MFC,这是一种不需要分散剂或干燥的方法,有利于MCF的加入。RPUF是在一个封闭的模具中制造的,以获得额外包装。过包装程度越高,RPUF的表观密度和刚度越高。此外,限制条件下的膨胀产生了更圆的聚合物细胞,各向异性降低。MFC和外包装协同作用,提高了RPUF的强度、刚度、热稳定性和动态力学性能。另一方面,RPUF的导热性不受这些因素的影响。

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