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首页> 外文期刊>Revista de metalurgia >Modificaciones de la microestructura y la capa pasiva de la aleación 2024-T3 Al-Cu durante una limpieza química empleada en la industria aeroespacial
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Modificaciones de la microestructura y la capa pasiva de la aleación 2024-T3 Al-Cu durante una limpieza química empleada en la industria aeroespacial

机译:航空航天业化学清洗过程中2024-T3 Al-Cu合金的微观结构和钝化层的改变

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摘要

A standard surface pretreatment for 2024-T3 Al-Cu alloy prior to the generation of chemical conversion coatings in the aerospace sector have been investigated. These pretreatments influence the alloy phases, which play a key role in the development of new eco-friendly chromium-free conversion coatings, but also in the susceptibility to localized corrosion in chloride medium. The complete pretreatment consists of two alkaline step and another acid step. Scanning Electron Microscopy revealed that after the complete pretreatment, Al(Cu,Mg) phases were partially or totally removed through dealloying with their subsequent copper enrichment, while only the aluminum matrix surrounding the Al(Cu,Fe,Mn,Si) phases was slightly attacked. Electrochemical analysis revealed the turn to cathodic character of Al(Cu,Mg) phases that still remain on the surface, while the Al(Cu,Fe,Mn,Si) phases have a higher corrosion potential than the aluminum matrix. Conversely, none of these phases were affected when only alkaline steps were employed. Identified the corrosion processes that take place in the different phases when the alloy is treated with a surface pretreatment, it is possible to design alternative Cr-free protective process.
机译:研究了在航空航天领域产生化学转化涂层之前对2024-T3 Al-Cu合金进行标准表面预处理的方法。这些预处理会影响合金相,合金相在新型环保无铬转化膜的开发中起着关键作用,而且在氯化物介质中对局部腐蚀的敏感性也很重要。完整的预处理包括两个碱性步骤和另一个酸性步骤。扫描电子显微镜显示,在完全预处理之后,通过脱附其后续的铜富集,部分或全部除去了Al(Cu,Mg)相,而仅略微围绕Al(Cu,Fe,Mn,Si)相的铝基质被攻击。电化学分析表明,仍保留在表面上的Al(Cu,Mg)相转变为阴极特性,而Al(Cu,Fe,Mn,Si)相的腐蚀电位高于铝基体。相反,当仅采用碱性步骤时,这些相均不受影响。通过对合金进行表面预处理来确定在不同阶段发生的腐蚀过程,有可能设计出替代的无铬保护过程。

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