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A method to predict the anodic coating thickness of mixed alloy anodizing

机译:一种预测混合合金阳极氧化阳极涂层厚度的方法

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A model was constructed to calculate the current distribution among various alloys under mixed alloy anodizing conditions, and in turn to predict the thickness of the anodic coatings formed on the alloys during the mixed alloy anodizing process. This theoretically based method takes into consideration many process parameters, including constant voltage anodizing, constant current anodizing, different combinations of aluminum alloys and different surface area ratios of the various alloys in the mixed alloy load. The accuracy of this method was tested with a number of cases of mixed alloy loads using different combinations of alloys and varied surface area ratios. The results of the case studies demonstrate that the model can accurately predict the anodic coating thickness formed under various anodizing conditions during mixed alloy anodizing.
机译:构造模型以计算混合合金阳极氧化条件下各种合金的电流分布,然后在混合合金阳极氧化过程中预测在合金上形成的阳极涂层的厚度。该理论基于方法考虑了许多工艺参数,包括混合合金负载中各种合金的铝合金的恒定电压阳极氧化,恒定电流阳极氧化,不同的表面积比。使用不同组合和变化的表面积比的不同组合,用多种混合合金载荷的情况测试该方法的准确性。案例研究结果表明,该模型可以在混合合金阳极氧化期间精确地预测在各种阳极氧化条件下形成的阳极涂层厚度。

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