Tungsten inert gas(TIG) welding is the most commonly used joining process for aluminum alloy for AA6061 and AA7075 which are highly demanded in the aerospace engineering and the automobile sector, but there are some d...Tungsten inert gas(TIG) welding is the most commonly used joining process for aluminum alloy for AA6061 and AA7075 which are highly demanded in the aerospace engineering and the automobile sector, but there are some defects occur during TIG welding like micro-crack, coarse grain structure, and porosity. To improve these defects, the TIG welded joint is processed using friction stir processing(FSP).This paper presents the effect of friction stir processing on TIG welding with filler ER4043 and ER 5356 for dissimilar aluminum alloy AA6061 and AA7075. The mechanical characterization, finite element formulation and mathematical equations of heat transfer of TIG + FSP welded joints are investigated using ANSYS Fluent software by adjusting process parameters of FSP. The results show that the maximum compressive residual stress 73 MPa was obtained at the fusion zone(FZ) of the TIG weldment with filler ER4043, whereas minimum compressive residual stress 37 MPa was obtained at stir zone(SZ) of the TIG+ FSP with filler 5356. The maximum heat flux 5.33 × 106 W/m2 and temperature 515C have observed at tool rotation 1600 rpm with a feed rate of 63 mm/min. These results give a satisfactory measure of confidence in the fidelity of the simulation。展开更多
对2 mm C24S铝锂合金薄板进行TIG焊和FSW焊接试验,焊后利用光学显微镜(OM)和扫描电镜(SEM)观察分析两种焊接方法所得接头的显微组织,并测试其室温拉伸性能和显微硬度。结果表明:TIG焊所得接头组织粗大,焊缝气孔缺陷严重,焊缝区强化相大...对2 mm C24S铝锂合金薄板进行TIG焊和FSW焊接试验,焊后利用光学显微镜(OM)和扫描电镜(SEM)观察分析两种焊接方法所得接头的显微组织,并测试其室温拉伸性能和显微硬度。结果表明:TIG焊所得接头组织粗大,焊缝气孔缺陷严重,焊缝区强化相大量溶解,接头抗拉强度仅为母材的47.9%,焊缝显微硬度为92 HV,且拉伸接头塑性较差;FSW焊焊缝成形良好,接头组织细小,且焊缝强化相并未溶解,接头拉伸强度达到母材的82.6%,焊缝显微硬度高达115 HV,接头塑性良好。展开更多
文摘Tungsten inert gas(TIG) welding is the most commonly used joining process for aluminum alloy for AA6061 and AA7075 which are highly demanded in the aerospace engineering and the automobile sector, but there are some defects occur during TIG welding like micro-crack, coarse grain structure, and porosity. To improve these defects, the TIG welded joint is processed using friction stir processing(FSP).This paper presents the effect of friction stir processing on TIG welding with filler ER4043 and ER 5356 for dissimilar aluminum alloy AA6061 and AA7075. The mechanical characterization, finite element formulation and mathematical equations of heat transfer of TIG + FSP welded joints are investigated using ANSYS Fluent software by adjusting process parameters of FSP. The results show that the maximum compressive residual stress 73 MPa was obtained at the fusion zone(FZ) of the TIG weldment with filler ER4043, whereas minimum compressive residual stress 37 MPa was obtained at stir zone(SZ) of the TIG+ FSP with filler 5356. The maximum heat flux 5.33 × 106 W/m2 and temperature 515C have observed at tool rotation 1600 rpm with a feed rate of 63 mm/min. These results give a satisfactory measure of confidence in the fidelity of the simulation。
文摘对2 mm C24S铝锂合金薄板进行TIG焊和FSW焊接试验,焊后利用光学显微镜(OM)和扫描电镜(SEM)观察分析两种焊接方法所得接头的显微组织,并测试其室温拉伸性能和显微硬度。结果表明:TIG焊所得接头组织粗大,焊缝气孔缺陷严重,焊缝区强化相大量溶解,接头抗拉强度仅为母材的47.9%,焊缝显微硬度为92 HV,且拉伸接头塑性较差;FSW焊焊缝成形良好,接头组织细小,且焊缝强化相并未溶解,接头拉伸强度达到母材的82.6%,焊缝显微硬度高达115 HV,接头塑性良好。