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Preparation and Performance of Rare Earths Chemical Conversion Film on Magnesium Alloy

机译:镁合金上稀土化学转化膜的制备及性能

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摘要

Golden yellow cerium conversion film was obtained on magnesium alloys surface by immersion method and the preparation parameters were established. The influence of different process parameters on the surface morphology and performance of the conversion film were analyzed by means of SEM and electrochemical method. Formation dynamics about cerium conversion film on magnesium alloy in solution containing cerium salt and the anti-corrosion behavior of the conversion film in 3.5% NaCl solution were studied by electrochemical method respectively. The results shows that the conversion film is more compact at room temperature when concentration of cerium sulfate is 10 g·L~(-1) in the solution; the open circuit potential of the magnesium sample moves up to positive direction about 100 mV, the surface of conversion film becomes even and lustrous, and the adhesion intensity of conversion film increases when adding aluminum nitrate into the solution containing cerium salt. The pH value of the solution and immersion time of the sample in the solution also affect the surface morphology and anti-corrosion property of the conversion film. After covered by rare earths conversion film, the anti-corrosion property of magnesium alloy is obviously improved. Rare earth conversion film has self-repairing capability in corrosion medium.
机译:通过浸渍法在镁合金表面获得金黄色铈转化膜,并建立了制备参数。通过SEM和电化学方法分析了不同工艺参数对转化膜表面形貌和性能的影响。分别通过电化学方法研究了镁合金在含铈盐溶液中铈转化膜的形成动力学和转化膜在3.5%NaCl溶液中的腐蚀行为。结果表明,当溶液中硫酸铈的浓度为10 g·L〜(-1)时,转化膜在室温下更致密。镁样品的开路电位上升到约100 mV的正方向,转化膜的表面变得光滑有光泽,当向含铈盐溶液中添加硝酸铝时,转化膜的附着强度增加。溶液的pH值和样品在溶液中的浸泡时间也会影响转化膜的表面形态和抗腐蚀性能。稀土转化膜覆盖后,镁合金的防腐性能明显提高。稀土转化膜在腐蚀介质中具有自修复能力。

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