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Scalable processing of thermoplastic polyurethane nanocomposites toughened with nanocellulose

机译:纳米纤维素增韧的热塑性聚氨酯纳米复合材料的可扩展加工

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摘要

The production of strong and elastic polyurethane nanocomposites toughened with nanocellulose (NC) and their widespread application in many engineering fields are currently limited by poor processability via classical industrial processing methods and/or the usage of large amount of solvents. In this report, we demonstrate a scalable, organic solvent-free incorporation of nanocellulose into thermoplastic polyurethane (TPU) and a remarkable reinforcement without compromising elastic properties. The nanocomposites were prepared via water-assisted dispersion of nanocellulose in polyether polyol by bead milling, drying and reactive extrusion of this dispersion with comonomers. Upon the incorporation of nanocellulose (0.5 wt.%), as observed from infrared spectroscopic and thermal analysis, the phase mixing of hard and soft-segments in the TPU matrix and the primary relaxation temperature have slightly increased due to the hydrogen bonding, interfacial area and nucleation-enhanced by long polar nanocrystals. The TPU/nanocellulose nanocomposites prepared with an appropriate stoichiometric ratio (determined through appropriate process control) showed a remarkable improvement (up to 43%) in ultimate tensile strength without compromising the elastic properties including elongation, creep and hysteresis.
机译:目前,通过纳米纤维素(NC)增韧的强韧弹性聚氨酯纳米复合材料的生产及其在许多工程领域中的广泛应用受到传统工业加工方法加工性差和/或使用大量溶剂的限制。在本报告中,我们证明了纳米纤维素可扩展,无有机溶剂地掺入热塑性聚氨酯(TPU)中,并且在不损害弹性的情况下具有显着的增强作用。纳米复合材料是通过水助分散的纳米纤维素在聚醚多元醇中的珠磨,干燥和与共聚单体的反应性挤出制备的。从红外光谱和热分析中观察到,掺入纳米纤维素(0.5 wt。%)后,由于氢键,界面面积,TPU基质中硬段和软段的相混合以及主要弛豫温度略有增加并通过长极性纳米晶体增强了成核作用。以适当的化学计量比(通过适当的工艺控制确定)制备的TPU /纳米纤维素纳米复合材料在不影响包括拉伸,蠕变和滞后性在内的弹性的情况下,显示出极限拉伸强度的显着改善(最高可达43%)。

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