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Tuning of hydrophobicity of WO_3-based hot-dip zinc coating with improved self-cleaning and anti-corrosion properties

机译:改进的自清洁和防腐性能,调整WO_3的热浸锌涂层疏水性

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Hot-dip galvanic (ZnAl) coatings with enhanced self-cleaning and anti-corrosion attributes were developed through effective incorporation of WO3 nanoparticles. The wet-synthesized WO3 nanoparticles were systematically characterized for crystallinity, optical properties, bonding characteristics, compositional purity, chemical state, morphology, size distribution, and colloidal and thermal stability; and successfully assimilated into the galvanic coating. High water contact angles (112.3 degrees) recorded for the composite coating revealed improved hydrophobicity of the tuned surface. The coating displayed excellent self-cleaning property against the applied dirt particles. The hydrophobic WO3 nanoparticles-incorporated coating exhibited superior anti-corrosion performance than the conventional bare ZnAl coating as revealed by scanning Kelvin probe microscopic studies, long-term potential measurements, Tafel polarization and impedance spectroscopy. The composite coating exhibited high charge transfer resistance (280.20 Omega.cm(2)) and low corrosion rate (6.54 x 10(-6) mmpy) along with enhanced mechanical and tribological properties. The better performance of the composite coating was attributed to the combined 'barrier-hydrophobic-sacrificial' effect of the WO3-incorporated ZnAl coating.
机译:通过有效掺入WO3纳米粒子,开发了具有增强的自清洁和防腐属性的热浸电镀(ZNAL)涂层。湿合成的WO3纳米颗粒被系统为结晶度,光学性质,粘合特性,组成纯度,化学状态,形态,尺寸分布和胶体和热稳定性;并成功地融合到电镀涂层中。为复合涂层记录的高水电接触角(112.3度)显示出调整表面的改善疏水性。涂层对施加的污垢颗粒显示出优异的自清洁性质。疏水性WO3纳米颗粒掺入涂层的涂层优异的抗腐蚀性能,而不是通过扫描开尔文探针微观研究,长期潜在测量,Tafel偏振和阻抗光谱透露的常规裸ZNAL涂层。复合涂层表现出高电荷转移电阻(280.20ωCM(2))和低腐蚀速率(6.54×10(-6)毫比)以及增强的机械和摩擦学特性。复合涂层的更好性能归因于WO3掺入的ZNAL涂层的“障碍 - 疏水牺牲”效果。

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