Su Chun, Zhou Jianzhong, Meng Xiankai, Huang Shu
School of Mechnical Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Mechanical & Vehicle Engineering, Changzhou Institute of Technology, Changzhou 213000, China.
Materials (Basel). 2016 Sep 26;9(10):799. doi: 10.3390/ma9100799.
As a new treatment process after welding, the process parameters of laser shock peening (LSP) in dynamic strain aging (DSA) temperature regimes can be precisely controlled, and the process is a non-contact one. The effects of LSP at elevated temperatures on the distribution of the surface residual stress of AA6061-T6 welded joints were investigated by using X-ray diffraction technology with the sin² method and Abaqus software. The fatigue life of the welded joints was estimated by performing tensile fatigue tests. The microstructural evolution in surface and fatigue fractures of the welded joints was presented by means of surface integrity and fracture surface testing. In the DSA temperature regime of AA6061-T6 welded joints, the residual compressive stress was distributed more stably than that of LSP at room temperature. The thermal corrosion resistance and fatigue properties of the welded joints were also improved. The experimental results and numerical analysis were in mutual agreement.
作为焊接后的一种新型处理工艺,激光冲击喷丸(LSP)在动态应变时效(DSA)温度区间的工艺参数能够得到精确控制,且该工艺为非接触式。采用X射线衍射技术的sin²法和Abaqus软件,研究了高温下LSP对AA6061-T6焊接接头表面残余应力分布的影响。通过进行拉伸疲劳试验来估算焊接接头的疲劳寿命。借助表面完整性和断口测试展示了焊接接头表面和疲劳断口的微观组织演变。在AA6061-T6焊接接头的DSA温度区间,残余压应力的分布比室温下LSP处理时更稳定。焊接接头的抗热腐蚀性能和疲劳性能也得到了改善。实验结果与数值分析相互吻合。