低红外发射率环氧树脂/银复合涂层具有优异的机械性能和耐盐水性能

IF 0.7 4区 材料科学 Q3 Materials Science
Weigang Zhang, Yuping Lv, Dandan Lv, Lulu Pan, Ziti Sun
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引用次数: 0

摘要

本研究以环氧树脂、片状银粉和石墨烯分别作为功能颜料、粘结剂和界面改性剂,采用玻璃棒镀膜法制备了具有良好力学性能和耐盐水性能的低红外发射率涂层。本研究系统地考察了银粉粒度、银粉和石墨烯的加入对镀层性能的影响。银粉粒径越大,镀层的发射率明显降低,力学性能提高。当Ag粒径为10 μ m时,镀层的发射率和力学性能最佳,随着银粉添加量的增加,镀层的发射率和光泽度显著降低,力学性能显著提高。石墨烯添加量的增加显著降低了涂层的光泽度,提高了涂层的柔韧性。石墨烯含量为8wt %,涂层同时具有最佳的发射率、光泽度和机械性能。石墨烯改性的环氧树脂/银复合涂层具有良好的耐盐水性能。经海水腐蚀21天后,涂层的发射率、光泽度、附着强度、柔韧性和抗冲击强度分别达到0.535、14.7、1级、2 mm和50 kg·cm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low infrared emissivity epoxy resin/Ag composite coating with outstanding mechanical properties and saltwater resistance
In this study, a low infrared emissivity coating with good mechanical properties and salt water resistance was prepared by the glass rod coating method, using epoxy resin, flake Ag powder, and graphene as a functional pigment, binder, and interface modifier, respectively. The study systematically investigated the impact of Ag powder particle size, as well as the addition of silver powder and graphene, on the coating properties. The larger particle size of the Ag powder led to a significant decrease in emissivity and enhancement of the mechanical properties of the coating. The coating had optimal emissivity and mechanical properties at an Ag particle size of 10 μ m. The emissivity and glossiness of the coating can be significantly reduced with the increase in added Ag powder, and the mechanical properties will be significantly improved. The increase in added graphene significantly reduced the glossiness and improved the flexibility of the coating. With a graphene content of 8 wt%, the coating has the best emissivity, glossiness, and mechanical properties at the same time. The epoxy resin/Ag composite coating, modified by graphene, showed good salt water resistance. After being corroded by salt water for 21 days, the emissivity, glossiness, adhesion strength, flexibility, and impact strength of the coating reached 0.535, 14.7, grade 1, 2 mm, and 50 kg · cm, respectively.
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
0.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Information not localized
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