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Preparing an Environment-benignly Rare-earth Based Chemical Conversion Coatings on 6063 Aluminium Alloy

机译:在6063铝合金上制备环境良稀土化化学转化涂层

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In order to develop an environment-benignly chemical conversion process to substitute the toxic hexavalent chromium treatment on Al alloy surface, a new surface treatment technology based on rare-earth element, which is to form chemical conversion coating on 6063 Al alloy was presented. In this process, Ce(NO_3)_3 was adopted in the chrome-free preparing solution, and KMnO_4 was used as oxidant to accelerate the coating formation on 6063 Al alloy. Furthermore, an L_(16)(4~3) orthogonal experiment was carried out to examine the effect of Ce(NO_3)_3, KMnO_4 and solution temperature on the coating growth on 6063 Al alloy. Accelerants of SrCl_2 and NH_4VO_3 were added to the preparing solution to improve the coating performance. XRD, SEM and EDS were used to analyse the coating surface structure, morphology and composition. It was found that a good anti-corrosion coating which is mainly composed of the elements of Al, Ce, O, Mn, Mg could be formed in the optimal preparing solution of 5g/L Ce(NO_3)_3 , 4g/L KMnO_4, 1.4g/L SrCl_2 at the temperature of 20°C.
机译:为了开发环境良性化学转化方法,替代对Al合金表面的有毒六价铬处理,提出了一种基于稀土元素的新型表面处理技术,即在6063 al合金上形成化学转化涂层。在该方法中,在无铬制备溶液中采用Ce(NO_3)_3,用KMnO_4用作氧化剂,以加速6063 al合金的涂层形成。此外,进行L_(16)(4〜3)正交实验,以检查Ce(NO_3)_3,KMnO_4和溶液温度对6063 al合金涂层生长的影响。将SrCl_2和NH_4VO_3的促进剂加入到制备溶液中以改善涂层性能。 XRD,SEM和EDS用于分析涂层表面结构,形态和组成。结果发现,主要由Al,Ce,O,Mn,Mg的元素组成的良好的抗腐蚀涂层可以在5g / L Ce(NO_3)_3,4g / L KMNO_4, 1.4g / L srcl_2在20°C的温度下。

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