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Experimental Analysis of the Influence of Factors Acting on the Layer Thickness Formed by Anodic Oxidation of Aluminium

机译:影响铝阳极氧化形成层厚度的因素的实验分析

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The current practice in the field of anodic oxidation of aluminium and its alloys is based mainly on a set of partial empirical experiences of technologists obtained during surface treatment. The aim of the presented paper is deeper and more complex identification of the influence of chemical and technological factors acting during the anodic oxidation process especially on the thickness of the formed surface layer by the electrolysis method in a sulfuric acid solution. The current density was selected as the basic criterion for verification evaluation and analysis of experimentally obtained data, in accordance with Faraday’s laws. For current densities of 1 to 5 A·dm ?2 , the synergy of significant influence factors was identified, and mathematical and statistical models were then developed to predict the thickness of the surface layer with a relative accuracy of up to 10%. The presented paper does not only focus on the observation of the thickness of the surface layer desired by the customer, but also on the monitoring of this thickness in relation to the overall layer thickness of the coating.
机译:铝及其合金的阳极氧化领域中的当前实践主要基于表面处理过程中获得的技术人员的部分经验经验。本文的目的是更深入,更复杂地识别在阳极氧化过程中起作用的化学和工艺因素的影响,特别是在硫酸溶液中通过电解方法对形成的表面层厚度的影响。根据法拉第定律,选择电流密度作为验证评估和分析实验所得数据的基本标准。对于1至5 A·dm?2的电流密度,确定了重要影响因素的协同作用,然后建立了数学和统计模型来预测表面层的厚度,相对精度最高为10%。提出的论文不仅着眼于客户所需的表面层厚度的观察,而且着重于相对于涂层的总层厚度的该厚度的监测。

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