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Trivalent Chromium Conversion Coating Formed on Hot Dip Zn-55Al-1.6Si Coated Steel

机译:在热浸ZN-55A-1.6SI涂层钢上形成三价铬转化涂层

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Trivalent Chromium Process (TCP) coating on hot dip Zn-55Al-1.6Si coated steel was investigated by XPS, SEM and EDS. The XPS revealed that aluminium oxides enriched the conversion coating surface. SEM and EDS analyses indicated that composition and microstructure of the conversion coating were not uniform on the dendrite and inter-dendrite regions within the Zn-Al alloy coating, and a small amount of spherical precipitation with the same composition as the conversion coating was detected in the zinc-rich inter-dendrite region. The optimal forming parameters of dilute passivator determined by salt spray test and orthogonal test is: 40°C, 50 vol.% and 3 min. In addition, the salt spray corrosion resistance of the optimal conversion coatings can reach 192 h, and the optimal TCP coating can reduce the cathodic corrosion current density in 0.05 M NaCl solution by an order of magnitude due to the electrochemical polarization measurements.
机译:通过XPS,SEM和EDS研究了热浸ZN-55A-1.6SI涂层钢上的三价铬工艺(TCP)涂层。 XPS显示氧化铝富集转化涂层表面。 SEM和EDS分析表明,转化涂层的组成和微观结构在Zn-Al合金涂层内的树突和树突间区域上并不均匀,并且在检测到转化涂层时具有与转化涂层相同的组合物的少量球形沉淀富含锌的枝形间区域。盐雾试验和正交试验确定的稀钝化剂的最佳成形参数是:40℃,50体积%和3分钟。此外,最佳转化涂层的盐雾耐腐蚀性可以达到192小时,并且最佳TCP涂层可以通过电化学偏振测量值的级别下降0.05M NaCl溶液中的阴极腐蚀电流密度。

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