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Dynamic mechanical analysis of novel polyurethane coating for military applications

机译:新型军用聚氨酯涂料的动态力学分析

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摘要

Three polyurethane coatings were evaluated using DMA to investigate the relationship between dynamic mechanical properties and durability properties of coated test panels. The current polyurethane solvent-based formulation, used as a chemical agent resistant camouflage top coat on all military tactical vehicles, was investigated along with newly developed water-reducible (WR) polyurethane coatings. The WR coatings offer significantly reduced volatile organic compounds (VOCs) compared to the solvent-based system, and thus represent environmentally compliant coatings. DMA investigations revealed that the two classes of polyurethane coatings exhibit different dynamic mechanical properties, which are attributed to different cross-linking mechanisms involved in film formation. The more uniformly cross-linked solvent-based coating provides the best chemical agent resistance but the poorest mechanical properties. Properties measured using DMA were sensitive to the degree of isocyanate to hydroxyl indexing in the WR formulations as well as the drying time of coatings prior to evaluation. DMA investigations indicated that longer cure times at ambient temperature (6 or more months) may adversely affect the mechanical properties of the solvent-based system and potentially enhance chemical agent resistance of the WR coating. Further studies involving aged coatings are planned. Published by Elsevier Science B.V. [References: 13]
机译:使用DMA评估了三种聚氨酯涂料,以研究动态力学性能与涂层测试面板的耐久性之间的关系。目前的聚氨酯溶剂基配方已被用作所有军用战术车辆的抗化学剂伪装面漆,并与新开发的水可稀释(WR)聚氨酯涂料一起进行了研究。与基于溶剂的系统相比,WR涂料可显着减少挥发性有机化合物(VOC),因此代表了符合环保要求的涂料。 DMA研究表明,这两类聚氨酯涂料表现出不同的动态机械性能,这归因于成膜过程中不同的交联机理。较均匀地交联的溶剂型涂料具有最佳的耐化学试剂性能,但机械性能最差。使用DMA测量的性能对WR配方中异氰酸酯对羟基指数的程度以及评估前涂料的干燥时间敏感。 DMA研究表明,在环境温度下较长的固化时间(6个月或更长时间)可能会对基于溶剂的体系的机械性能产生不利影响,并有可能提高WR涂层的耐化学试剂性。计划对涉及老化涂层的进一步研究。由Elsevier Science B.V.发布[参考文献:13]

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