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首页> 外文期刊>Electrochimica Acta >A FEM model for investigation of micro-galvanic corrosion of Al alloys and effects of deposition of corrosion products
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A FEM model for investigation of micro-galvanic corrosion of Al alloys and effects of deposition of corrosion products

机译:用于研究铝合金微电偶腐蚀和腐蚀产物沉积影响的有限元模型

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A finite element method model has been elaborated aiming at a deeper insight into the influence of microstructure on micro-galvanic corrosion of Al alloys. The model considers a dynamic corroding surface and takes into account kinetic data from local electrochemical reactions, transport of O-2 and ionic species (e.g., Al3+, H+, Cl-), homogeneous reactions in the electrolyte, deposition of reaction products and its influence on both anodic and cathodic reactions. As a first step, an Al matrix with a micrometer-sized cathodic intermetallic particle exposed in 0.1 M NaCl has been considered. The simulation predicts the dynamic changes of the corroding surface, and the flow and distribution of ionic species and of O-2 in space and time. The calculated pH of the electrolyte inside and nearby the occluded corroding volume suggests the formation of insoluble Al(OH)(3) on both the cathodic and anodic areas. This results in blocking effects of anodic and cathodic reactions and in eventual termination of the micro-galvanic corrosion. The predicted deposition of corrosion product is in good agreement with in-situ atomic force microscopy measurements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:阐述了有限元方法模型,旨在更深入地了解微观结构对铝合金微电偶腐蚀的影响。该模型考虑了动态腐蚀表面,并考虑了来自局部电化学反应,O-2和离子物质(例如Al3 +,H +,Cl-)的迁移,电解质中的均相反应,反应产物的沉积及其影响的动力学数据。在阳极和阴极反应上。作为第一步,已经考虑了具有暴露在0.1 M NaCl中的微米级阴极金属间化合物颗粒的Al基体。该模拟预测了腐蚀表面的动态变化,以及离子物质和O-2在时空上的流动和分布。计算得出的被腐蚀的内部和附近的电解液的pH值表明在阴极和阳极区域均形成了不溶的Al(OH)(3)。这导致阳极和阴极反应的阻断作用,并最终终止微电流腐蚀。腐蚀产物的预计沉积与原位原子力显微镜测量结果非常吻合。 (C)2016 Elsevier Ltd.保留所有权利。

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