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Laser-induced electrochemical de- and repassivation investigations on plasma-oxidized aluminium alloys

机译:等离子体氧化铝合金的激光诱导电化学去钝化和再钝化研究

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In situ laser depassivation of plasma electrolytically oxididized (PEO) coatings on aluminium was investigated with nanosecond pulses. Ultraviolet radiation of 266 nm was chosen in order to achieve a high absorption in the dielectric coating. The additive accumulation of laser-induced material defects (incubation) affected the depassivation processes. Incubation occurred only at the edges of the ablation craters irradiated by the outer region of the Gaussian beam profile, where the local fluence is below the ablation threshold. The ablation rate in the spot center did not exhibit an incubation effect. Repassivation was interpreted by a linear combination of a high-field and a point defect growth model. At low overpoten-tials, field gradients affect the process driving the oxide growth at the buried interface. At high fields, corrosion reactions dominate at the oxide/solution interface.
机译:用纳秒脉冲研究了铝上等离子体电解氧化(PEO)涂层的原位激光钝化。选择266 nm的紫外线辐射以在介电涂层中获得高吸收率。激光诱导的材料缺陷(孵化)的累加积累影响了钝化过程。温育仅发生在高斯光束轮廓的外部区域所照射的消融坑的边缘处,在该处局部通量低于消融阈值。斑点中心的消融率没有显示孵化效果。重钝化是通过高场和点缺陷生长模型的线性组合来解释的。在低超电势下,场梯度会影响驱动氧化物在掩埋界面生长的过程。在高电场下,腐蚀反应在氧化物/溶液界面处占主导。

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