Failure mechanism of Al-Zn-In sacrificial anode under the synergic action of water pressure and fluid in the extreme deep-sea environment

Rui Liu , Rui Zhang , Yu Cui , Aidi Wang , Fandi Meng , Li Liu , Fuhui Wang
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引用次数: 0

Abstract

Corrosion failure of sacrificial anodes in extreme deep-sea environment is a key problem in metal protection technology. This study investigated the failure mechanism of the Al-Zn-In sacrificial anode under the synergic action of water pressure and fluid flow, by microstructure characterization and finite element analysis. The results exhibit that water pressure promotes the dissolution of Al-Zn-In alloy near the precipitates that are enriched at the grain boundaries. The flow amplifies the promoting effect of the pressure on anodic dissolution by inhibiting the formation of corrosion layers, and it accelerates the mass loss by mechanically aggressing the aluminum matrix. The synergic effect of water pressure and fluid flow results in a rapid degradation in the extreme deep-sea environment.

极端深海环境中水压和流体协同作用下 Al-Zn-In 牺牲阳极的失效机理
极端深海环境中牺牲阳极的腐蚀失效是金属防护技术中的一个关键问题。本研究通过微结构表征和有限元分析,研究了水压和流体流动协同作用下 Al-Zn-In 牺牲阳极的失效机理。结果表明,水压会促进 Al-Zn-In 合金在晶界富集的析出物附近的溶解。水流通过抑制腐蚀层的形成放大了压力对阳极溶解的促进作用,并通过对铝基体的机械侵蚀加速了质量损失。水压和流体流动的协同作用导致铝在极端的深海环境中迅速降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.30
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