6066铝合金阳极氧化工艺条件的优化

Q4 Materials Science Journal of Surface Science and Technology Pub Date : 2019-01-03 DOI:10.18311/JSST/2018/19839
Hossam Jalal, Yones Saoud, F. Karabet
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引用次数: 1

摘要

为特定应用选择合适的铝合金涉及抗拉强度、密度、柔软度、可成形性、可操作性、焊接能力、耐腐蚀性等。铝合金因其高强度重量比而广泛应用于飞机中。AA阳极氧化工艺已在工业上得到应用,以提高其耐腐蚀性。在本研究中,AA6066在硫酸中阳极氧化过程中,电解质浓度、温度和电压等因素会影响厚度和硬度。通过实验设计(DOE),使用田口方法对工艺因素进行了修改。田口方法包括正交因素阵列、信噪比(S/N)、方差分析(ANOVA),用于确定6066铝合金阳极氧化的最佳条件水平,并分析这些条件对厚度和硬度的影响。研究发现,影响厚度和显微硬度的最有效因素是电解质的浓度。通过田口优化试验进行了优化试验,确定了优化条件。最后,在最佳条件下对铝样品进行了阳极氧化处理,并用扫描电镜进行了扫描,得到的厚度和显微硬度分别为25μm和640Hv。
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Optimization Condition for Aluminum Alloy 6066 Anodizing
The choice of suitable aluminum alloys for a particular application involves tensile strength, density, softness, formability, operability, welding ability, corrosion resistance, etc. Aluminum alloys are widely used in aircraft because of the high strength to weight ratio. The anodizing process of AA has been applied industrially to improve corrosion resistance. In this research, various factors such as (concentration of the electrolyte, temperature, and voltage) affect thickness and hardness during anodizing of AA6066 in sulphuric acid. Process factors have been modified using the Taguchi method through the Design of Experiments (DOE). The Taguchi method includes an orthogonal array of factors, a Signal-to-Noise ratio (S/N), Analysis of Variance (ANOVA), which were used to determine the optimum condition levels for aluminum alloy 6066 anodizing, and to analyze the effect of these conditions on thickness and hardness. It was found that the most effective factor on thickness and micro-hardness is the concentration of the electrolyte. Optimization test was carried out by Taguchi optimization test and the optimal conditions were determined. Finally, the anodizing was carried out on aluminum sample under the optimal conditions then scanned by SEM. The thickness and micro hardness obtained at the optimal conditions were 25μm, and 640Hv, respectively.
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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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