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Effect of coating thickness on modifying the texture and corrosion performance of hot-dip galvanized coatings

机译:涂层厚度对热浸镀锌涂层织构和腐蚀性能的影响

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摘要

Hot-dip galvanized zinc coating is the most frequently used among coatings to protect steel against corrosion. When coated steel c sheets are subjected to a corrosive environment, its corrosion behaviour is affected by texture and microstructure variations. The aim of this research work was to Study the texture and corrosion resistance of hot-dip galvanized zinc coatings affected by the coating thickness and chemical composition of the zinc bath. Texture of the coatings was evaluated employing X-ray diffraction whilst its corrosion behaviour was analyzed using Tafel polarization test. Experimental results showed that (00.2) basal texture component would be weakened by increasing the lead content of the zinc bath and coatings with strong (00.2) texture component have lower corrosion current density than the coatings with weak (00.2) texture component. Furthermore, it was inferred that by increasing the thickness of the coatings with the same content of lead in the zinc bath, the relative intensity of (00.2) texture component and corrosion resistance of the coatings would be decreased and conversely, relative intensity of (20.1) high angle pyramidal planes and (10.0) prism planes would be increased due to establish a balance between Surface and strain energies. Besides, five types of morphology were observed on the surface of hot-dip galvanized coatings in dull and bright spangles. Finally, it Was recognized that the main corrosion product of the salt spray test is Simonkolleite.
机译:热浸镀锌锌涂层是最常用于防止钢腐蚀的涂层。当涂层的c钢板经受腐蚀环境时,其腐蚀行为会受到织构和微观结构变化的影响。这项研究工作的目的是研究受锌浴涂层厚度和化学成分影响的热浸镀锌锌涂层的质构和耐腐蚀性。使用X射线衍射评估涂层的织构,同时使用Tafel偏振测试分析其腐蚀行为。实验结果表明,增加锌镀液中铅的含量会削弱(00.2)基体成分,具有强(00.2)质构成分的涂层的腐蚀电流密度低于具有弱(00.2)质构成分的涂层。此外,可以推断出,通过增加锌液中相同铅含量的涂层厚度,可降低(00.2)织构成分的相对强度和涂层的耐蚀性,反之,相对强度(20.1) )由于在表面能和应变能之间建立了平衡,因此将增加大角锥平面和(10.0)棱镜平面。此外,在热浸镀锌涂层的表面上观察到了五种类型的形态,呈钝角和亮角。最后,人们认识到盐雾试验的主要腐蚀产物是西蒙科利特。

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