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Microstructure and Residual Stresses of AA2519 Friction Stir Welded Joints under Different Heat Treatment Conditions

机译:不同热处理条件下AA2519摩擦搅拌焊接接头的组织和残余应力

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摘要

The aim of this research was to investigate the effect of different heat treatment conditions of AA2519 friction stir welded joints on their microstructure and residual stresses. The following welding parameters have been used: 500 rpm tool rotation speed, 150 mm/min tool traverse speed, tool tilt angle 2°, pressure force 17 kN. The welded material was investigated in three different configurations: HT0, HT1, and HT2. The first type of weld (HT-0) was made using AA2519 alloy in non-precipitation hardened state and examined in such condition. The second type of weld (HT-1) has been performed on AA2519-T62, that corresponds to precipitation hardening condition. The last type of weld (HT2) was performed on annealed AA2519 and the obtained welds were subjected to the post-weld precipitation hardening process. The heat treatment was carried out in two stages: solution heat treatment (530 °C/2 h + cooling in cold water) and aging (165 °C/1 0 h). Residual stresses were measured using X-Ray diffraction patterns obtained from Bruker D8 Discover X-ray diffractometer utilizing the concepts of Euler cradle and polycapillary primary beam optics. The conducted research indicates that the best material properties: homogenous microstructure and uniform distribution of microhardness and compressive state of residual stresses were obtained for the HT-2 series samples subjected to heat treatment after the friction stir welding (FSW) process.
机译:这项研究的目的是研究AA2519搅拌摩擦焊接接头的不同热处理条件对其显微组织和残余应力的影响。使用了以下焊接参数:刀具转速为500 rpm,刀具移动速度为150 mm / min,刀具倾斜角为2°,压力为17 kN。以三种不同的配置对焊接材料进行了研究:HT0,HT1和HT2。第一类焊缝(HT-0)是使用非沉淀硬化状态的AA2519合金制成的,并在此条件下进行检查。第二种焊缝(HT-1)已在AA2519-T62上进行,它对应于沉淀硬化条件。最后一种焊缝(HT2)在退火的A2525上进行,所得焊缝经过焊后沉淀硬化处理。热处理分为两个阶段:固溶热处理(530°C / 2 h +在冷水中冷却)和时效(165°C / 1 0 h)。残余应力是使用Euler摇篮和多毛细管初级光束光学器件的概念,使用从Bruker D8 Discover X射线衍射仪获得的X射线衍射图测量的。进行的研究表明,在搅拌摩擦焊(FSW)过程中进行热处理的HT-2系列样品获得了最佳的材料性能:均匀的显微组织,均匀的显微硬度分布和残余应力的压缩状态。

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