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Effects of Alloying Elements in Aluminum Alloys and Activations on Zincate Treatment and Electroless Nickel-Phosphorus Plating

机译:铝合金中合金元素及其活化对锌酸盐处理和化学镀镍磷的影响

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Zincate treatment and electroless nickel-phosphorus plating for aluminum alloys of A1100, A2017, A5052 and A7075 were researched from the viewpoints of alloying elements and activation conducted prior to zincate treatment. Surface morphologies of zincated surfaces, electrochemical properties during zincate treatment and depth profiles on activated and zincated surfaces were investigated by microscopy and measurement of temporal changes of electrode potential.Adhesion strengths of the plated films were measured by 90deg peeling test, which showed that double zincate treatment improved adhesion strength especially when ferric ion was added into the zincate solution except for the case of A7075. Temporal changes of electrode potential during zincate treatments and morphologies of the zincated surfaces showed that copper and zinc promoted uniform precipitation of zinc and resulting rapid termination of conversion reaction. Excess zinc was shown to dissolve into the plating solution and cause the formation of lowdensity area or gaps between plated films and substrates.Activation for Al 100 by various conditions showed that formation of oxide film had a remarkable effect on precipitation of zinc during zincate treatment. When a mixture of nitric and hydrofluoric acid was used for activation, finer particles of zinc were formed near etch pits compared with the cases of hydrochloric or nitric acid. On the other hand, the surface was uniformly covered with fine zinc particles in the case of the activation with a solution of sodium hydroxide. This indicates that uniformity of oxide film on substrate before zincate treatment is thought to bring about uniform precipitation of zinc.
机译:从合金元素和在锌酸盐处理之前进行活化的观点出发,研究了A1100,A2017,A5052和A7075铝合金的锌酸盐处理和化学镀镍磷。通过显微镜观察和观察电极电位随时间的变化,研究了镀锌表面的表面形貌,镀锌处理过程中的电化学性能以及活化和镀锌表面的深度分布,并通过90°剥离试验测量了镀膜的粘附强度,结果表明双镀锌层除A7075的情况外,这种处理特别是在将铁离子添加到锌酸盐溶液中时提高了粘合强度。锌盐处理过程中电极电位的时间变化和锌化表面的形态表明,铜和锌促进锌的均匀沉淀并导致转化反应迅速终止。结果表明过量的锌溶解在电镀液中并导致低密度区域或电镀膜与基材之间的间隙的形成。各种条件对Al 100的活化表明,氧化膜的形成对锌酸盐处理期间锌的沉淀具有显着影响。当使用硝酸和氢氟酸的混合物进行活化时,与盐酸或硝酸的情况相比,在蚀刻坑附近形成了更细的锌颗粒。另一方面,在用氢氧化钠溶液活化的情况下,表面均匀地覆盖有细的锌颗粒。这表明认为在锌酸盐处理之前在基底上的氧化膜的均匀性导致锌的均匀沉淀。

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