MULTI-RESPONSE OPTIMISATION OF ELECTRODEPOSITION OF NANO-CRYSTALLINE COMPOSITE COATINGS Cr-Cr3P IN STATU NASCENDI FROM TRIVALENT CHROMIUM-BATHS

E. G. Vinokurov, T. Burukhina, Ekaterina Yu. Napedenina
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Abstract

In this paper the effect of parameters such as current density, temperature, electrolytic bath pH and concentration of chromium sulfate and sodium hypophosphite on the electrodeposition process of the Cr-P alloys was investigated. Chemical composition of the coatings was evaluated by scanning electron microscopy and X-ray diffraction. Experimental design 25-1 central composite design was used to evaluate the chemical composition of alloys, current efficiency and the appearance of coatings as well as to optimize the electrodeposition process of the alloy using Response Surface Methodology associated with experimental design. The Harrington desirability function was applied for optimization. The optimal composition of bath (in g/l) and electrolysis conditions are proposed: Cr2(SO4)3·6H2O – 285, Al2(SO4)3·12H2O – 120, Na2SO4 – 50, NaH2PO2·H2O – 20, CO(NH2)2 – 70, рН – 1.3, temperature – 35 ºС, current density – 46 А/dm2. An acceptable current efficiency 13-14 % was observed for an alloy obtained under optimal conditions of 46 A/dm2, 35 °C and pH 1.3 from an electrolyte of optimal composition. Under these conditions, the coating contained 16 wt.% phosphorus. The alloys were X-ray amorphous at a phosphorus content of about 6 wt.%. When the phosphorus content was 16 wt.% the alloys became nanocrystalline and the chromium phosphide – Cr3P phase was released, which can be seen from the peaks on X-ray diffractograms. This indicates the formation of Cr-Cr3P nanocrystalline composite coatings under nucleation conditions (in Statu Nascendi). Therefore, the results of this work show the importance of using optimization techniques to obtain metallic coatings with controlled properties for different types of applications.
三价铬槽中原位电沉积纳米晶复合涂层Cr-Cr3P的多响应优化
本文研究了电流密度、温度、电解液pH、硫酸铬和次亚磷酸钠浓度等参数对Cr-P合金电沉积过程的影响。用扫描电子显微镜和x射线衍射分析了涂层的化学成分。采用25-1中心复合设计对合金的化学成分、电流效率和镀层外观进行评价,并利用响应面法结合实验设计对合金的电沉积工艺进行优化。采用哈林顿期望函数进行优化。提出了最佳电解液组成(g/l)和电解条件:Cr2(SO4)3·6H2O - 285, Al2(SO4)3·12H2O - 120, Na2SO4 - 50, NaH2PO2·H2O - 20, CO(NH2)2 - 70, рН - 1.3,温度- 35ºС,电流密度- 46 А/dm2。在46 A/dm2、35°C和pH 1.3的最佳条件下,从最佳成分的电解质中获得的合金的电流效率为13- 14%。在这些条件下,涂层含磷16%。在磷含量约为6wt .%时,合金呈x射线无定形。当磷含量为16 wt.%时,合金呈纳米晶状,并释放出磷化铬- Cr3P相,从x射线衍射峰可见。这表明在成核条件下(在Statu Nascendi中)形成了Cr-Cr3P纳米晶复合涂层。因此,这项工作的结果表明了使用优化技术来获得具有不同类型应用控制性能的金属涂层的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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