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Aging kinetics of friction stir welded Al-Cu-Li-Mg-Ag and Al-Cu-Li-Mg alloys

机译:搅拌摩擦焊接Al-Cu-Li-Mg-Ag和Al-Cu-Li-Mg合金的时效动力学

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Friction stir welding under ambient cooling conditions, using tool rotation rate of 800 rpm and welding speed of 200 mm per minute was carried out on 2195 and 2199 Al-Li alloys. Underwater welding was also performed on both the alloys using a pool on the top of workpiece. Post weld heat treatment for various durations was conducted to study the effect of alloy chemistry on aging kinetics in various metallurgical zones developed during welding. Vickers microhardness, differential scanning calorimetry, and transmission electron microscopy results showed that low dislocation density after recrystallization in weld nugget results in delayed aging kinetics for both the alloys. Ag containing alloy 2195 showed faster aging response compared to Ag-free alloy 2199. Coarse precipitates at grain boundary and in the grain interior were found responsible for loss of non-recoverable strength in heat affected zone for both the alloys. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在2195和2199 Al-Li合金上,在800 rpm的工具转速和200 mm / min的焊接速度下,于环境冷却条件下进行摩擦搅拌焊接。还使用工件顶部的熔池对两种合金进行了水下焊接。进行了不同时间的焊后热处理,以研究合金化学对焊接过程中形成的各个冶金区域的时效动力学的影响。维氏显微硬度,差示扫描量热法和透射电子显微镜结果表明,焊缝熔核中再结晶后的低位错密度会导致两种合金的时效动力学延迟。与不含银的合金2199相比,含银的合金2195表现出更快的时效响应。两种合金在热影响区的晶界和晶粒内部均出现粗大的沉淀,这是造成不可恢复强度损失的原因。 (C)2016 Elsevier Ltd.保留所有权利。

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