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Corrosion behaviour of brazing material AA4343

机译:钎焊材料AA4343的腐蚀行为

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摘要

This paper is part of a work devoted to corrosion of brazed AA4343/AA3003/AA4343 materials on water side of automotive heater cores. The microstructure of the superficial resolidified AA4343 brazing material has been previously characterised [1] and [2]. It is composed of large (Al) grains separated by valleys containing multiphase deposits of (Al), Si and α-Al(Mn,Fe)Si. The present study focuses on its electrochemical behaviours in neutral water–ethylene glycol mixtures at different temperatures with and without chloride ions. Three types of behaviour are revealed: (i) passivation, (ii) defective passivation and (iii) pitting corrosion at the corrosion potential. The defective passivation is investigated in greater depth. The results show that Si needles do not participate in the corrosion progress whereas the α-Al(Mn,Fe)Si particles are preferential sites for corrosion attacks. α-Al(Mn,Fe)Si particle/matrix interactions are responsible of the defective passivation at valleys level where the α-Al(Mn,Fe)Si phase particles are mainly concentrated. Increasing the temperature enhances this reactivity whereas addition of ethylene glycol decreases it and favours a transition from defective passivation to passivation for ethylene glycol content higher than 55%.
机译:本文是致力于腐蚀汽车加热器芯水侧的AA4343 / AA3003 / AA4343钎焊材料工作的一部分。表面固化的AA4343钎焊材料的微观结构先前已被表征[1]和[2]。它由大的(Al)晶粒组成,这些晶粒由多个谷隔开,这些谷包含(Al),Si和α-Al(Mn,Fe)Si的多相沉积物。本研究的重点是在有或没有氯离子的不同温度下,中性水-乙二醇混合物中的电化学行为。揭示了三种类型的行为:(i)钝化,(ii)有缺陷的钝化和(iii)在腐蚀电位下的点蚀。有缺陷的钝化将被更深入地研究。结果表明,硅针不参与腐蚀过程,而α-Al(Mn,Fe)Si颗粒是腐蚀的优先位置。 α-Al(Mn,Fe)Si相/基体之间的相互作用是造成谷值处钝化缺陷的原因,在该处,α-Al(Mn,Fe)Si相颗粒主要集中在钝化层。温度升高会提高该反应性,而乙二醇的添加会降低反应性,并有利于乙二醇含量高于55%时从有缺陷的钝化过渡到钝化。

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