Hydrophobic and corrosion resistant composite hot-dip zinc coating for protection of steel

C. V. Geethanjali, A. H. Riyas, M. Deepa
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Abstract

: Hot-dip galvanization is the most widely used method for the protection of steel against corrosion. The strategy of introducing hydrophobic nature to the hot-dip zinc coatings along with the corrosion resistance characteristics can enhance the protective efficacy and life time of the coatings. The effective enhancement in corrosion resistance and hydrophobic characteristics of hot-dip zinc coating can be achieved by incorporating metal oxide based composite into the coating matrix. In this contest, the present work explores the effect of introducing TiO 2 –Al 2 O 3 composite into hot-dip zinc coating for improving the hydrophobic and corrosion resistant characteristics of the coatings. The structural modification of the inner alloy layers of the hot-dip coating by using 0.2 wt.% of TiO 2 -Al 2 O 3 composite improves the hydrophobicity and corrosion resistance of the coating. Surface surface hydrophobicity and electrochemical performance of the composite coatings studied by using various instrumental analyses confirm the enhancement in coating characteristics due to the incorporation of TiO 2 -Al 2 O 3 composite into the zinc matrix. The composite zinc coating incorporated with optimized TiO 2 -Al 2 O 3 exhibits enhanced hydrophobicity with a water contact angle of 101.32° than the pure zinc coatings. The high E corr (-1267.17 mV) and low i corr (475.57 μA/cm 2 ) values of the composite coating as compared to the conventional zinc coating implies the improvement in corrosion resistance.
钢防护用疏水耐腐蚀复合热浸锌涂层
热镀锌是最广泛使用的钢材防腐保护方法。在热浸锌涂层中引入疏水性和耐腐蚀特性,可以提高涂层的防护效果和使用寿命。通过在涂层基体中掺入金属氧化物基复合材料,可以有效地提高热浸锌涂层的耐蚀性和疏水性。在本次竞赛中,本工作探讨了在热浸锌涂层中引入tio2 - al2o3复合材料对提高涂层疏水和耐腐蚀性能的影响。采用0.2 wt.%的tio2 - al2o3复合材料对热浸涂层内合金层进行结构改性,提高了涂层的疏水性和耐腐蚀性。通过各种仪器分析对复合涂层的表面疏水性和电化学性能进行了研究,证实了tio2 - al2o3复合材料加入锌基体后涂层特性的增强。与纯锌涂层相比,优化后的tio2 - al2o3复合锌涂层的疏水性增强,水接触角达到101.32°。与传统锌镀层相比,复合镀层的高E值(-1267.17 mV)和低i值(475.57 μA/ cm2)表明复合镀层的耐蚀性有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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