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Optimization of the electrolytic plasma oxidation processes for corrosion protection of magnesium alloy AM50 using the Taguchi method

机译:Taguchi方法优化用于镁合金AM50腐蚀防护的电解等离子体氧化工艺

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摘要

A number of studies have been carried out on the use of electrolytic plasma oxidation (EPO) technology for depositing ceramic coatings on magnesium alloys for corrosion protection. However, very few have focused on the optimization of the EPO process parameters. In this study, a design of experiment (DOE) technique, the Taguchi method, has been used to optimize the electrolytic plasma oxidation for the corrosion protection of magnesium alloy AM50. The experimental design consisted of four factors (treatment time, current density, and KOH and NaAlO_2 concentrations), with three levels of each factor. Potentiodynamic polarization measurements were conducted to determine the corrosion resistance of the coated samples. An analysis of the mean of signal-to-noise (S/N) ratio indicates that the corrosion resistance of EPO-coated AM50 alloy is influenced significantly by the levels in the Taguchi orthogonal array. The optimized coating parameters for corrosion resistance are 12min treatment time, 12 A/cm~2 current density, 0.9 g/1 KOH, 15.0 g/1 NaAlO_2. The percentage contribution of each factor is determined by the analysis of variance (ANOVA). The results show that the concentration of KOH is the most significant factor affecting the corrosion resistance of the coatings.
机译:关于使用电解等离子体氧化(EPO)技术在镁合金上沉积陶瓷涂层以防腐蚀的研究已经进行了许多。但是,很少有人关注EPO工艺参数的优化。在这项研究中,实验设计(DOE)技术,即Taguchi方法,已被用来优化电解等离子体氧化,以保护镁合金AM50。实验设计包括四个因素(处理时间,电流密度以及KOH和NaAlO_2浓度),每个因素三个水平。进行电位动力学极化测量以确定涂层样品的耐腐蚀性。对信噪比(S / N)平均值的分析表明,EPO涂层AM50合金的耐蚀性受到Taguchi正交阵列中含量的显着影响。优化的耐腐蚀涂层参数为:12min处理时间,12 A / cm〜2电流密度,0.9 g / 1 KOH,15.0 g / 1 NaAlO_2。每个因素的贡献百分比由方差分析(ANOVA)确定。结果表明,KOH的浓度是影响涂层耐腐蚀性的最重要因素。

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