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Corrosion Resistance of Zinc Phosphate Conversion Coatings on AZ91D Surface

机译:AZ91D表面磷酸锌转化涂层耐腐蚀性

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Magnesium alloys have been widely applied in many fields, because of their high strength-to-weight ratio. However, magnesium alloys have high chemical activity and are easily corroded. The poor corrosion resistance of magnesium alloys greatly limits its further application. In this paper, the zinc phosphate conversion coatings were prepared on the surface of AZ91D magnesium alloys. Nano-zinc oxide was the source of zinc and the zinc phosphate conversion coatings were prepared by the given process: 1.25 g/L NaNO_3, 3 g/L C_6H_8O_7 H_2O, 2.5 g/L NaF, 5.5 g/L ZnO, 12.5 mL/L H_3PO_4, reaction temperature 50°C, reaction for 30 minutes. The full immersion uniform corrosion test was conducted for the fabricated coatings. The morphology and composition of corrosion in different corrosion stages were characterized by XRD, SEM and other microscopies. The results showed that: (1) the corrosion process of the conversion coatings could be divided into three stages: the dissolution of the conversion coatings, the corrosion of the matrix and the deposition of insoluble matter; (2) XRD analysis and other methods found that the pine-needle magnesium oxychloride compounds were formed in the process of immersion firstly, and it was dissolved into Mg(OH)2 over time; (3) With the extension of immersion time, Mg(OH)2 increased continuously and played a major role in corrosion prevention. The deposited Mg(OH)2 was divided into two layers. In the initial deposition stage, it was mainly evenly dispersed on the surface of the alloy to form a tightly arranged inner layer. Afterwards, the crystals of Mg(OH)2 agglomerated and formed a sphere, becoming the outer layers.
机译:由于其高强度重量比,镁合金已广泛应用于许多领域。然而,镁合金具有高化学活性并且易于腐蚀。镁合金的耐差耐腐蚀性极大地限制了其进一步的应用。本文在AZ91D镁合金的表面上制备了磷酸锌转化涂层。纳米氧化锌是锌的源,通过给定的方法制备磷酸锌转化涂层:1.25g / L纳米_3,3g / L C_6H_8O_7 H_2O,2.5g / L NaF,5.5g / L ZnO,12.5ml / L H_3PO_4,反应温度50℃,反应30分钟。对制造涂层进行全浸均匀腐蚀试验。 XRD,SEM和其他显微镜表征了不同腐蚀阶段的腐蚀的形态和组成。结果表明:(1)转化涂层的腐蚀过程可分为三个阶段:转化涂层的溶解,基质的腐蚀和不溶性物质的沉积; (2)XRD分析和其他方法发现,首先在浸渍过程中形成松针氧基甲镁化合物,并随时间溶解在Mg(OH)2中; (3)随着浸渍时间的延伸,Mg(OH)2连续增加并在防腐中发挥了重要作用。将沉积的Mg(OH)2分为两层。在初始沉积阶段,主要分散在合金表面上以形成紧密布置的内层。然后,Mg(OH)2的晶体附聚并形成球体,成为外层。

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