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首页> 外文期刊>Corrosion science >Corrosion study of the friction stir lap joint of AA7050-T76511 on AA2024-T3 using the scanning vibrating electrode technique
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Corrosion study of the friction stir lap joint of AA7050-T76511 on AA2024-T3 using the scanning vibrating electrode technique

机译:扫描振动电极技术研究AA7050-T76511摩擦搅拌搭接在AA2024-T3上的腐蚀

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The corrosion of dissimilar friction stir (FSW) lap welded AA7050-T76511 and AA2024-T3 Al-alloys has been investigated using scanning vibrating electrode technique (SVET) in 0.1 M NaCl solution. FSW lowers the repassivation potential of the more active AA7050, while its pitting potential remains unaffected. For longer exposures at OCP pitting occurs preferentially on AA7050-nugget zone (NZ) close to the M7050-M2024-interface, due to the local galvanic coupling, as well as to the higher stability of pits nucleated on the AA7050-NZ. AA2024 heat-affected zone (HAZ) is the most intergranular corrosion (IC) susceptible region. However, IC-attack is less intense than on parent AA2024-T3 alloy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用扫描振动电极技术(SVET)在0.1 M NaCl溶液中研究了异种摩擦搅拌(FSW)搭接焊接AA7050-T76511和AA2024-T3铝合金的腐蚀。 FSW降低了活性较高的AA7050的重钝化电位,而其点蚀电位却不受影响。对于更长的OCP暴露时间,由于局部电流耦合以及AA7050-NZ上成核的凹坑具有较高的稳定性,因此优先在靠近M7050-M2024-界面的A7050-熔核区(NZ)上发生凹蚀。 AA2024热影响区(HAZ)是最易发生晶间腐蚀(IC)的区域。但是,IC攻击强度不如母体A2022-T3合金强。 (C)2015 Elsevier Ltd.保留所有权利。

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