Evaluation of the wettability of prepared anti-wetting nanocoating on different construction surfaces

被引:2
作者
Omar, Mustafa H. [1 ]
Hussian, Wissam A. [2 ]
Ahmed, Mays A. [2 ]
机构
[1] Bilad Alrafidain Univ Coll, Dept Civil Engn, Diyala, Iraq
[2] Gen Directorate Educ Diyala, Diyala, Iraq
关键词
anti-wetting; contact angle; nano-zirconia; nano-zinc oxide; surface coating; HYDROPHOBICITY; PERFORMANCE; ENERGY;
D O I
10.1515/jmbm-2022-0260
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Generally, the major problems of moisture damage are caused by wetting, and particularly in construction, which has led to extensive research for the production of hydrophobic (anti-wetting) coatings. The aim of this research is to prepare an anti-wetting (hydrophobic) nanocomposite coating for different construction surfaces (ceramic, brick and gypsum). Hydrophobic nanocomposite coating was synthesized using electrospinning technique. Polymethyl methacrylate and polystyrene (PS) solutions were prepared in different ratios and then separately reinforced with ZrO2 and ZnO nanoparticles. Contact angle, surface roughness, surface free energy and weathering effects were calculated for all specimens after being coated. All previously selected materials surfaces showed superhydrophobic and hydrophobic properties. The best results were obtained on ceramic surfaces after coating with PS/ZrO2. The water contact angle was 153 degrees while the surface roughness was 0.491 mu m and also showed the lowest surface free energy which was 5.5 mJ/m(2). Weathering conditions tend to decrease the values of contact angle and this is due to the environmental effect of the weathering but they still have their hydrophobic properties. SEM test was used to determine the surface morphology and nanoparticle size for ceramic surfaces coated with PS and nano-ZrO2.
引用
收藏
页码:786 / 792
页数:7
相关论文
共 21 条
[1]  
Asture A, 2022, POLYM BULL, V79, P1
[2]   Electrospun polystyrene fibres on TiO2 nanostructured film to enhance the hydrophobicity and corrosion resistance of stainless steel substrates [J].
Azimirad, R. ;
Safa, S. .
PRAMANA-JOURNAL OF PHYSICS, 2016, 86 (03) :653-660
[3]   Modified sessile drop method for assessing initial soil-water contact angle of sandy soil [J].
Bachmann, J ;
Horton, R ;
Van Der Ploeg, RR ;
Woche, S .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2000, 64 (02) :564-567
[4]   Influence of hydrophobisation on surface free energy of hybrid fiber reinforced ultra-high performance concrete [J].
Barnat-Hunek, Danuta ;
Smarzewski, Piotr .
CONSTRUCTION AND BUILDING MATERIALS, 2016, 102 :367-377
[5]   Effects of Surface Wettability and Roughness on the Heat Transfer Performance of Fluid Flowing through Microchannels [J].
Cui, Jing ;
Cui, Yanyu .
ENERGIES, 2015, 8 (06) :5704-5724
[6]  
Diaa B.M., 2017, INT J APPL ENG RES, V12, P16032
[7]  
Garg VR, 2015, J POLYM MATER, V32, P503
[8]   Effect of Experimental Parameters on Morphological, Mechanical and Hydrophobic Properties of Electrospun Polystyrene Fibers [J].
Huan, Siqi ;
Liu, Guoxiang ;
Han, Guangping ;
Cheng, Wanli ;
Fu, Zongying ;
Wu, Qinglin ;
Wang, Qingwen .
MATERIALS, 2015, 8 (05) :2718-2734
[9]   Investigation of Superhydrophobic/Hydrophobic Materials Properties Using Electrospinning Technique [J].
Jaafar, Hassan Talal ;
Aldabbagh, Balqees Mohammed Diaa .
BAGHDAD SCIENCE JOURNAL, 2019, 16 (03) :632-638
[10]   Influence of addition of zirconia on PMMA: A systematic review [J].
Leao, Rafaella de Souza ;
Dantas de Moraes, Sandra Lucia ;
de Luna Gomes, Jessica Marcela ;
Araujo Lemos, Cleidiel Aparecido ;
da Silva Casado, Bruno Gustavo ;
do Egito Vasconcelos, Belmiro Cavalcanti ;
Pellizzer, Eduardo Piza .
MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 106