Chen Feng, Quy Nguyen Xuan, Kim Jihoon, Hama Yukio
Division of Engineering, Muroran Institute of Technology, Muroran 050-8585, Japan.
Department of Civil Engineering, Hanoi Architectural University, Hanoi 100000, Vietnam.
Materials (Basel). 2021 Nov 15;14(22):6896. doi: 10.3390/ma14226896.
In this paper, experiments were conducted on the effects of aesthetic and durability of three representative surface protective material under accelerated weathering test for 5000 h. First, the adaptability of the surface protective material coating to the substrate was proven by examining the aesthetic properties and the water permeability of the building materials. Second, the pollutant resistance of the surface protective material coating to artificial stain was assessed using xenon-arc light. The result shows that the appearance of the silane types did not change significantly, and the water permeability was improved. In addition, the silicate types did not improve water permeability and the surface color was changed. Fluor- resin types effectively improved the water permeability, but the surface color became dark. Sample measurements showed changes in the average width of the contamination after weathering, with an increase after spray cleaning and ultrasonic cleaning. However, it was observed that after washing the pollution average width of all specimens due to weathering at 5000 h was almost as much or smaller than the initial value.
本文对三种代表性表面防护材料在5000小时加速老化试验下的美观性和耐久性影响进行了实验。首先,通过检测建筑材料的美观性能和透水性,证明了表面防护材料涂层对基材的适应性。其次,使用氙弧灯评估了表面防护材料涂层对人工污渍的耐污染性。结果表明,硅烷类材料的外观变化不明显,且透水性有所提高。此外,硅酸盐类材料的透水性没有提高,且表面颜色发生了变化。氟树脂类材料有效地提高了透水性,但表面颜色变深。样品测量显示,老化后污染的平均宽度发生了变化,喷雾清洗和超声清洗后有所增加。然而,观察到在5000小时老化后清洗所有试样的污染平均宽度几乎与初始值相同或更小。