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Excimer laser surface treatment of aluminum alloy AA7075 to improve corrosion resistance

机译:准分子激光对铝合金AA7075进行表面处理以提高耐腐蚀性

摘要

Excimer laser surface treatment was found to be an effective method for improving the pitting corrosion resistance of the aluminum alloy 7075. The results of the TEM study showed that laser surface melting of the alloy at an intensity of 10.3 J/cm2 resulted in the elimination of coarse second-phase particles in the laser-melted zone. More importantly, two compact layers containing aluminum oxide were formed on top of the laser-melted surface. Potentiodynamic polarization tests showed that as a result of the laser treatment, the corrosion current can be reduced by as much as six times, and a passive region was obtained. Besides, the analysis of the electrochemical impedance measurements showed that at an open-circuit potential (OCP), the polarization resistance and double-layer capacitance of the film/electrolyte interface of the laser-treated specimen were one order of magnitude higher and six times lower than that of the untreated specimen, respectively. Furthermore, when tested at OCP+50 mV, the untreated specimen suffered serious pitting corrosion, while a passive film had formed on the laser-treated specimen, which served as an effective barrier for reducing anodic dissolution.
机译:准分子激光表面处理是提高7075铝合金抗点蚀性能的有效方法。TEM研究结果表明,激光强度为10.3 J / cm2的铝合金表面熔化可消除铝的腐蚀。激光熔化区中的第二相粗颗粒。更重要的是,在激光熔融表面的顶部形成了两个包含氧化铝的致密层。电位动力学极化测试表明,通过激光处理,腐蚀电流可降低多达六倍,并获得了一个无源区域。此外,对电化学阻抗测量的分析表明,在开路电势(OCP)下,激光处理样品的薄膜/电解质界面的极化电阻和双层电容分别高一个数量级和六倍。分别低于未处理标本。此外,当在OCP + 50 mV下进行测试时,未经处理的样品遭受严重的点蚀,而在激光处理过的样品上形成了钝化膜,这是减少阳极溶解的有效屏障。

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