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Deposition and Characterization of Cerium-Based Conversion Coating on HPDC Low Si Content Aluminum Alloy

机译:HPDC低Si含量铝合金上铈基转化膜的沉积与表征

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摘要

Cerium-based conversion coatings were deposited on high pressure die cast (HPDC) Al-Si alloys using an immersion method. Hydrogen peroxide and sodium chloride were added to the conversion solution to accelerate the coating formation and to understand its formation mechanism. These studies showed that the deposition of cerium hydroxide/ oxide conversion layer starts from iron-rich intermetallic particles, which are located inside the eutectic region and then the coating growth continues to cover the entire alloy surface. This phenomenon passivates the active interfaces between iron-rich intermetallic particles and/ or the eutectic silicon phase and the aluminum matrix, which are prone to localized corrosion in chloride ions containing environments. Accordingly, values of the total impedance in EIS measurements significantly increased for the treated substrates. Morphologies of the conversion coatings and the oxidation state of cerium compounds were found to be dependent on the composition of the solution and the presence of chloride ions and/ or hydrogen peroxide. Aluminum alloy with higher silicon content showed a more active surface during immersion in the conversion solution. This makes it more difficult to be treated using aggressive conversion solutions. 
机译:使用浸入法将铈基转化膜沉积在高压压铸(HPDC)Al-Si合金上。将过氧化氢和氯化钠添加到转化溶液中以加速涂层形成并了解其形成机理。这些研究表明,氢氧化铈/氧化物转化层的沉积始于富铁的金属间化合物颗粒,它们位于共晶区域内部,然后涂层的生长继续覆盖整个合金表面。这种现象钝化了富铁金属间化合物颗粒和/或共晶硅相与铝基质之间的活性界面,这些界面在含氯离子的环境中易于局部腐蚀。因此,对于处理过的基板,EIS测量中的总阻抗值显着增加。发现转化涂层的形态和铈化合物的氧化态取决于溶液的组成以及氯离子和/或过氧化氢的存在。具有较高硅含量的铝合金在浸入转化溶液中时表现出更活跃的表面。这使得使用激进的转换解决方案更加难以治疗。

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