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Residual Stress, Microstructure and Mechanical Properties in Thick 6005A-T6 Aluminium Alloy Friction Stir Welds

机译:厚6005A-T6铝合金摩擦搅拌焊接中的残余应力,微观结构和机械性能

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摘要

Plates (37 mm thick) of 6005A-T6 aluminum alloy were butt joined by a single-sided and double-sided friction stir welding (FSW). The 3D residual stresses in the joints were determined using neutron diffraction. The microstructures were characterized by a transmission electron microscope (TEM) and electron backscatter diffraction (EBSD). In the single-sided FSW specimen, there were acceptable mechanical properties with a tensile strength of 74.4% of base metal (BM) and low residual stresses with peak magnitudes of approximately 37.5% yield strength of BM were achieved. The hardness is related to the grain size of the nugget zone (NZ), and in this study, precipitations were dissolved due to the high heat input. In the double-sided FSW specimen, there were good mechanical properties with a tensile strength of 80.8% of BM, but high residual stresses with peak magnitudes of approximately 70% yield strength of BM were obtained. The heat input by the second pass provided an aging environment for the first-pass weld zone where the dissolved phases were precipitated and residual stresses were relaxed.
机译:通过单面和双面摩擦搅拌焊接(FSW)连接6005A-T6铝合金的板(37mm厚)。使用中子衍射测定关节中的3D残余应力。通过透射电子显微镜(TEM)和电子反向散射衍射(EBSD)的特征在于微观结构。在单侧FSW样品中,抗抗极度的抗拉强度的抗拉强度的抗拉强度(BM)和低残余应力达到约37.5%的BM屈服强度。硬度与块区(NZ)的晶粒尺寸有关,并且在该研究中,由于高热输入而溶解沉淀。在双面FSW样品中,具有良好的机械性能,抗拉强度为80.8%的BM,但获得了高70%屈服强度的峰值幅度的高残余应力。第二次通过的热量为第一遍焊接区域提供了老化环境,其中溶解阶段沉淀出溶解相并且松弛残余应力。

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