Wang Fangfang, Feng Lajun, Lu Man
School of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, China.
Key Laboratory of Corrosion and Protection of Shaanxi Province, Xi'an 710048, China.
Polymers (Basel). 2019 Apr 19;11(4):714. doi: 10.3390/polym11040714.
Electrostatic spraying (ES) was used to prepare multi-walled carbon nanotube (MWCNT)/waterborne polyurethane (WPU) abrasion-proof, conductive coatings to improve the electrical conductivity and mechanical properties of WPU coatings. The dispersity of MWCNTs and the electrical conductivity, surface hardness, and wear resistance of the coating prepared by ES (ESC) were investigated. The ESC was further compared with coatings prepared by brushing (BrC). The results provide a theoretical basis for the preparation and application of conductive WPU coatings with excellent wear resistance. The dispersity of MWCNTs and the surface hardness and wear resistance of ESC were obviously better than those of BrC. With an increase in the MWCNT content, the surface hardness of both ESC and BrC went up. As the MWCNT content increased, the wear resistance of ESC first increased and then decreased, while the wear resistance of BrC decreased. It was evident that ESC with 0.3 wt% MWCNT was fully capable of conducting electricity, but BrC with 0.3 wt% MWCNT failed to conduct electricity. The best wear resistance was achieved for ESC with 0.3 wt% MWCNT. Its wear rate (1.18 × 10 cm/mm N) and friction coefficient (0.28) were the lowest, which were 50.21% and 20.00% lower, respectively, than those of pure WPU ESC.
采用静电喷涂(ES)法制备了多壁碳纳米管(MWCNT)/水性聚氨酯(WPU)耐磨导电涂层,以提高WPU涂层的导电性和力学性能。研究了MWCNTs的分散性以及通过ES制备的涂层(ESC)的导电性、表面硬度和耐磨性。将ESC与通过刷涂制备的涂层(BrC)进行了进一步比较。研究结果为制备和应用具有优异耐磨性的导电WPU涂层提供了理论依据。MWCNTs的分散性以及ESC的表面硬度和耐磨性明显优于BrC。随着MWCNT含量的增加,ESC和BrC的表面硬度均有所提高。随着MWCNT含量的增加,ESC的耐磨性先增加后降低,而BrC的耐磨性则降低。显然,含0.3 wt% MWCNT的ESC完全能够导电,但含0.3 wt% MWCNT的BrC则不能导电。含0.3 wt% MWCNT的ESC具有最佳的耐磨性。其磨损率(1.18×10 cm/mm N)和摩擦系数(0.28)最低,分别比纯WPU ESC低50.21%和20.00%。