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Titanium anodisation designed for surface colouration - Systemisation of parametric interaction using response surface methodology

机译:设计用于表面着色的钛阳极氧化-使用响应表面方法对参数相互作用进行系统化

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This work statistically examines the influence of operating parameters on the thin oxide layer developed during titaniumanodisation and the complexity of parameter interactions on the surface colouration. The optimal parametric combinations for obtaining desired oxide thickness and interference colours are investigated. A three parametric Doehlert experimental designwas employed for the purpose. Reliable regressionmodelswere developed for oxide thickness (Tmeas), and colour specification viz., lightness (L*) and hue angle (h) with determination coefficients of 0.970, 0.988 and 0.998, respectively. The three chosen parameters namely operating voltage (V), electrolyte concentration (C), and operating temperature (T) were found to have significant interactions during anodisationwhich are analysed through a response surface. The oxide thicknesswas found to be influenced by all three parameters. It was additionally found to have multiple optimal parametric combinations for a desirable outcome because of the interactions; the lightness was found to be significantly affected by the interactions of electrolyte concentration and operating temperature; the expected periodicity in hue angle, as reported in literature, persisted amidst parameter interactions with mild variations to the trend. Furthermore, interdependencies were found among the developed regression models. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作统计地检查了操作参数对钛阳极氧化过程中形成的薄氧化层的影响以及参数相互作用对表面着色的复杂性。研究了获得所需氧化物厚度和干涉色的最佳参数组合。为此,采用了三个参数的Doehlert实验设计。针对氧化物厚度(Tmeas)和颜色规格(即亮度(L *)和色相角(h))建立了可靠的回归模型,确定系数分别为0.970、0.988和0.998。发现三个选定的参数,即工作电压(V),电解质浓度(C)和工作温度(T)在阳极氧化过程中具有显着的相互作用,并通过响应面进行分析。发现氧化物厚度受所有三个参数影响。另外还发现,由于相互作用,对于期望的结果,它具有多个最佳参数组合。发现亮度受电解液浓度和工作温度的相互作用的显着影响;正如文献报道的那样,预期的色调角周期性在参数交互作用下持续存在,并且趋势略有变化。此外,在已开发的回归模型之间发现了相互依赖性。 (C)2017 Elsevier Ltd.保留所有权利。

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