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Intergranular corrosion of 8090 Al-Li: Interpretation by electrochemical impedance spectroscopy

机译:8090 Al-Li的晶间腐蚀:电化学阻抗谱的解释

摘要

Aluminum-lithium alloys are widely used in the aircraft industry because of their low density and high elastic modulus. The Al-Li alloy 8090 has been well characterized from a mechanical viewpoint, but its corrosion mechanism has not been studied so completely. Recent work has focused on the use of electrochemical techniques to detect the early stages of localized corrosion and to assess the rate of corrosion taking place at specific locations in aircraft. Electrochemical impedance spectroscopy (EIS) has been used to measure and monitor the localized corrosion susceptibility of this Al-Li alloy, which is currently being used in aerospace applications, in solutions of 1 M NaCl+10 mL H2O2 (30 wt-%) at neutral pH. During the corrosion process, there is an increase in surface inhomogeneity which causes deviations from the ideal behaviour proposed by Randles. A tendency to behave as a porous electrode is evidenced in the Nyquist plot by the presence of a straight segment in the high frequency range. This response is the result of preferential dissolution at grain boundaries, which leads to the development of deep intergranular attack and promotes a non-homogenous signal distribution. At low frequencies a capacitive arc appears that may be related to the chloride adsorption involved in alloy dissolution.
机译:铝锂合金由于其低密度和高弹性模量而被广泛用于飞机工业。从机械的角度来看,Al-Li合金8090具有很好的特性,但是对腐蚀机理的研究还不够全面。最近的工作集中于使用电化学技术来检测局部腐蚀的早期阶段,并评估飞机特定位置发生的腐蚀速率。电化学阻抗谱(EIS)已用于在1 M NaCl + 10 mL H2O2(30 wt%)的溶液中测量和监测该Al-Li合金的局部腐蚀敏感性,该合金目前已用于航空航天领域。中性pH。在腐蚀过程中,表面不均匀性增加,这导致与Randles提出的理想行为背道而驰。在奈奎斯特图中,通过在高频范围内存在直段,可以证明其表现为多孔电极的趋势。该响应是在晶界处优先溶解的结果,这导致了深晶间腐蚀的发展并促进了非均匀信号的分布。在低频下,出现电容性电弧,这可能与合金溶解中涉及的氯化物吸附有关。

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    Damborenea Juan de; Conde A.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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