Effect of grain structures and precipitation characteristics on the corrosion behaviour of Sc-containing Al-Cu-Li alloy

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Corrosion Engineering, Science and Technology Pub Date : 2023-03-05 DOI:10.1080/1478422X.2023.2184521
Yuankang Xie, Sheng-dan Liu, Yun-lai Deng, Xiao-bin Guo
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Abstract

ABSTRACT The intergranular corrosion behaviour of Al-Cu-Li-Sc alloy with different microstructures was systematically investigated in this work. The SKPFM characterisation revealed that the AlCuSc (W) phase has more negative potential compared to the Al matrix and undergoes dealloying in the intergranular corrosion solution. The dealloying rate of the W phase in the corrosive solution is relatively slow, which does not lead to serious pitting characteristics. As denser anodic T1 precipitates formed on low-angle grain boundaries of the partially recrystallised sample will reduce the precipitates on the sub-grain interior, resulting in the low-angle boundary being prone to preferential corrosion and reduced intergranular corrosion resistance. The complete recrystallised sample exhibits corrosion of grain interior and propagates along corroded bands parallel to {111}Al habit planes of T1 precipitates, reducing the expansion rate of corrosion along the grain boundaries. Restraining the IGC along the low-angle grain boundary and inducing crystallographic corrosion to improve the intergranular corrosion resistance.
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晶粒组织和析出特征对含sc Al-Cu-Li合金腐蚀行为的影响
本文系统地研究了不同组织的Al-Cu-Li-Sc合金的晶间腐蚀行为。SKPFM表征表明,与Al基体相比,AlCuSc (W)相具有更多的负电位,并且在晶间腐蚀溶液中发生了合金化。腐蚀溶液中W相的脱合金速度相对较慢,不会产生严重的点蚀特征。部分再结晶试样低角晶界上形成的较致密的阳极T1析出相会减少亚晶内部的析出相,导致低角晶界容易发生优先腐蚀,降低晶间耐蚀性。完全再结晶的样品显示出晶粒内部的腐蚀,并沿着与T1析出相{111}Al习惯面平行的腐蚀带扩展,降低了沿晶界的腐蚀扩展速率。抑制沿低角晶界的IGC,诱导晶相腐蚀,提高晶间耐蚀性。
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来源期刊
Corrosion Engineering, Science and Technology
Corrosion Engineering, Science and Technology 工程技术-材料科学:综合
CiteScore
3.20
自引率
5.60%
发文量
58
审稿时长
3.4 months
期刊介绍: Corrosion Engineering, Science and Technology provides broad international coverage of research and practice in corrosion processes and corrosion control. Peer-reviewed contributions address all aspects of corrosion engineering and corrosion science; there is strong emphasis on effective design and materials selection to combat corrosion and the journal carries failure case studies to further knowledge in these areas.
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