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Microstructural evolution and mechanical properties of friction stir welded AA2017 with different initial microstructures

机译:不同初始微观结构的搅拌摩擦焊接AA2017的组织演变和力学性能

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Residual stresses, local mechanical properties, and microstructural evolution in terms of grain structures and precipitation distribution have been studied in friction stir welding of AA2017 in T4 and T6 conditions. Microstructural studies including optical and electron microscopy were made to characterize the developed microstructures in different zones of the weldment. Furthermore, X-ray diffraction technique and digital image correlation technique were also utilized to assess residual stress and mechanical properties of the welded alloy. The results show that coarsening of semi-coherent plate-shaped precipitates and formation of incoherent spherical-shaped particles occur in heat affected and thermomechanical affected zones while a non-uniform grain size distribution is formed in the stir zone because of asymmetric distributions of strain rate and temperature. Moreover, the developed residual stresses in the welded samples significantly enhance the effect of subsequent natural aging.
机译:在T4和T6条件下,在AA2017摩擦搅拌焊接中研究了残余应力,局部力学性能以及晶粒结构和沉淀分布方面的微结构演变。进行了包括光学和电子显微镜在内的微观结构研究,以表征焊件不同区域中已形成的微观结构。此外,还利用X射线衍射技术和数字图像相关技术来评估焊接合金的残余应力和力学性能。结果表明,在热影响区和热机械影响区中,半相干板状析出物粗化和不相干球形颗粒的形成,而应变率分布不对称则在搅拌区形成了不均匀的晶粒尺寸分布。和温度。此外,焊接样品中产生的残余应力显着增强了后续自然时效的影响。

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