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Nanocellulose-Reinforced Polyurethane for Waterborne Wood Coating

机译:纳米纤维素增强聚氨酯的水性木器涂料

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摘要

With the enhancement of people’s environmental awareness, waterborne polyurethane (PU) paint—with its advantages of low release of volatile organic compounds (VOCs), low temperature flexibility, acid and alkali resistance, excellent solvent resistance and superior weather resistance—has made its application for wood furniture favored by the industry. However, due to its lower solid content and weak intermolecular force, the mechanical properties of waterborne PU paint are normally less than those of the traditional solvent-based polyurethane paint, which has become the key bottleneck restricting its wide applications. To this end, this study explores nanocellulose derived from biomass resources by the 2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPO) oxidation method to reinforce and thus improve the mechanical properties of waterborne PU paint. Two methods of adding nanocellulose to waterborne PU—chemical addition and physical blending—are explored. Results show that, compared to the physical blending method, the chemical grafting method at 0.1 wt% nanocellulose addition results in the maximum improvement of the comprehensive properties of the PU coating. With this method, the tensile strength, elongation at break, hardness and abrasion resistance of the waterborne PU paint increase by up to 58.7%, ~55%, 6.9% and 3.45%, respectively, compared to the control PU; while the glossiness and surface drying time were hardly affected. Such exploration provides an effective way for wide applications of water PU in the wood industry and nanocellulose in waterborne wood coating.
机译:随着人们环保意识的增强,水性聚氨酯(PU)涂料具有挥发性有机化合物(VOC)释放量低,低温柔韧性,耐酸和碱,优异的耐溶剂性和优异的耐候性等优点适用于受到业界青睐的木制家具。然而,由于其较低的固含量和较弱的分子间作用力,水性PU涂料的机械性能通常低于传统的溶剂型聚氨酯涂料,这已成为限制其广泛应用的关键瓶颈。为此,本研究通过2,2,6,6-四甲基哌啶-1-氧基(TEMPO)氧化法探索了生物质资源衍生的纳米纤维素,以增强并改善水性PU涂料的机械性能。探索了两种将纳米纤维素添加到水性聚氨酯中的方法-化学添加和物理共混-。结果表明,与物理共混方法相比,添加0.1 wt%纳米纤维素的化学接枝方法可最大程度地改善PU涂层的综合性能。与对照PU相比,水性PU涂料的抗张强度,断裂伸长率,硬度和耐磨性分别提高了58.7%,〜55%,6.9%和3.45%。而光泽度和表面干燥时间几乎不受影响。这种探索为水PU在木材工业中的广泛应用以及纳米纤维素在水性木器涂料中的广泛应用提供了有效的途径。

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