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Experimental Evaluation and Modeling of Galvanic Interactions Between Aluminum Alloy 7075-T6 and Noble Materials

机译:铝合金7075-T6和惰性材料之间电流相互作用的实验评价与建模

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Galvanic interactions between aluminum alloys and noble materials in corrosive environments can cause structural problems in the use of military and commercial assets. The aim of the current work is to determine the conditions that lead to significant localized corrosion by galvanic coupling and to understand its controlling mechanism. The cathodic kinetics of noble materials (silver, nickel and carbon-fiber reinforced bismaleimide (BMI)) and the dissolution kinetics of aluminum alloy AA7075-T6 were quantitatively investigated and used as boundary conditions for a numerical study. Finite element analyses were used to study the galvanic interactions of AA7075-T6 and noble materials in a geometry modeled on a two fastened plates as a function of solution pH and chloride concentration [Cl~-]. The results in the paper indicated that both initiation and propagation of localized corrosion were influenced by the galvanic interactions, and these were evaluated as a function of geometry, noble material, and solution composition.
机译:腐蚀性环境中铝合金和贵族材料之间的电流相互作用可能导致军事和商业资产的结构存在问题。目前工作的目的是确定通过电流耦合导致显着局部腐蚀的条件,并理解其控制机制。定量研究了贵族材料(银,镍和碳纤维增强的双酰亚胺(BMI))和溶出动力学的溶ol动力学,并用作数值研究的边界条件。用有限元分析来研究AA7075-T6和贵米材料在两个紧固板上模型的几何形状中的电流相互作用,作为溶液pH和氯化物浓度[Cl〜]。本文的结果表明,局部腐蚀的启动和传播受到电抗体相互作用的影响,并且这些函数被评价为几何形状,惰性材料和溶液组合物的函数。

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