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Mechanical and Thermal Properties of Waterborne Polyurethane Coating Modified through One-Step Cellulose Nanocrystals/Graphene Materials Sols Method

机译:通过单步纤维素纳米晶体/石墨烯材料溶液改性水性聚氨酯涂层的机械和热性能

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Developing multifunctional coatings with excellent mechanical and thermal properties is highly desirable for wood-based composite application. The recent development of waterborne coatings for wood products suggests that a promising thermosetting material needs to also have properties like low volatile organic contents (VOCs), hardness, and fast curing. The cellulose nanocrystals/graphene materials (CNC/GM) sols were prepared through the one-step method as the thermally conductive and reinforced modifier for preparing waterborne polyurethane (WPU) coatings. The influence of this modifier on the thermal and mechanical properties such as thermal conductivity, abrasion resistance, and adhesion of WPU coatings was investigated. The results indicated that adding CNC/GM sols increased the hardness, abrasion resistance, and thermal conductivity of the WPU coatings, and meanwhile maintained the coating adhesion at the highest grade (level 1). The highest abrasion resistance value of 0.023 g/100r was obtained for the modified WPU coating when the addition of GM was 3%.
机译:对于木基复合应用,非常需要开发具有优异机械和热性能的多功能涂层。最近用于木材产品的水性涂料的发展表明,有前途的热固性物质需要具有低挥发性有机含量(VOC),硬度和快速固化等性质。通过单步法作为用于制备水性聚氨酯(WPU)涂层的导热和增强改性剂,制备纤维素纳米晶体/石墨烯材料(CNC / GM)溶胶。研究了该改性剂对热电和机械性能的影响,例如导热性,耐磨性和WPU涂层的粘附性。结果表明,添加CNC / GM溶胶增加了WPU涂层的硬度,耐磨性和导热性,同时保持最高等级(1)的涂层粘附。当添加GM的加入3%时,得到了改性的WPU涂层的最高耐磨性值为0.023g / 100r。

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