首页> 外文期刊>International journal of corrosion >The Red Sea as a Corrosive Environment: Corrosion Rates and Corrosion Mechanism of Aluminum Alloys 7075, 2024, and 6061
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The Red Sea as a Corrosive Environment: Corrosion Rates and Corrosion Mechanism of Aluminum Alloys 7075, 2024, and 6061

机译:红海作为腐蚀环境:7075、2024和6061铝合金的腐蚀速率和腐蚀机理

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Corrosion behavior of Al 7075, Al 2024, and Al 6061 in the Red Sea water was studied using weight loss (WL) measurements and potentiodynamic polarization (PDP) technique. The corrosion patterns and corrosion products formed on Al alloys were characterized using optical photography (OP), scanning electron microscopy (SEM), and energy-dispersive spectroscopy (EDS). The results showed that WL data were consistent with bimodal model rather than the power law function and the corrosion rates exhibit a continuous decrease with exposure time. The increasing order of the Red Sea corrosivity on the studied Al alloys can be given as follows Al 6061 < Al 2024 < Al 7075. The results of temperature effect revealed that an increase in temperature resulted in an increase in both anodic and cathodic current density and a decrease in corrosion potential. Al 7075 was less influenced by temperature than the other alloys. Pitting corrosion was the predominant corrosion pattern detected on all Al alloy surfaces after prolonged immersion in the Red Sea water. The appearance of S peak in EDS spectra of Al 7075 after corrosion gives an indication of the contribution of bacteria in the corrosion process.
机译:使用失重(WL)测量和电位动力学极化(PDP)技术研究了Al 7075,Al 2024和Al 6061在红海水中的腐蚀行为。使用光学摄影(OP),扫描电子显微镜(SEM)和能量色散光谱(EDS)对铝合金上形成的腐蚀模式和腐蚀产物进行表征。结果表明,WL数据与双峰模型一致,而不是幂律函数,并且腐蚀速率随着暴露时间的延长而持续降低。在研究的铝合金上,红海腐蚀性的增加顺序为Al 6061

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