Li Xiang, Huang Shan, Tang Jianping, Mu Weihao, Xu Xin, Chen Xuehui
School of Mechanical Engineering, Hefei University of Technology, No. 193, Tunxi Road, Hefei 230009, China.
School of Mechanical and Electrical Engineering, Anhui Jianzhu University, No. 292, Ziyun Road, Hefei 230601, China.
Micromachines (Basel). 2022 Jul 17;13(7):1130. doi: 10.3390/mi13071130.
To study the effects of aluminum alloys processed by a laser in air and water and at different water velocities, corresponding experiments were conducted and the impacting effects of different water velocities on the surface of the workpiece were simulated, respectively. The results show that when laser processing aluminum alloy materials in air, there is more slag and a recondensation layer on both sides of the groove, the heat-affected zone is larger and the surface processing quality is poor. When laser processing aluminum alloy materials in water, the processing quality is improved. With the increase in water velocity, the impacting and cooling effect is enhanced, the groove depth and groove width show a trend of first increasing and then decreasing, the slag and recondensation layer on both sides of the groove are reduced, the heat-affected zone is reduced and the processing quality of the groove is improved. When the water velocity reaches 30 m/s, a better groove can be obtained. Laser processing aluminum alloy materials in water can obtain better processing quality than laser processing in air.
为研究铝合金在空气和水中以及不同水流速度下进行激光加工的效果,分别开展了相应实验,并模拟了不同水流速度对工件表面的冲击效果。结果表明,在空气中对铝合金材料进行激光加工时,槽两侧有较多熔渣和再凝固层,热影响区较大,表面加工质量较差。在水中对铝合金材料进行激光加工时,加工质量得到改善。随着水流速度的增加,冲击和冷却效果增强,槽深和槽宽呈先增大后减小的趋势,槽两侧的熔渣和再凝固层减少,热影响区减小,槽的加工质量得到改善。当水流速度达到30m/s时,可获得较好的槽形。在水中对铝合金材料进行激光加工比在空气中进行激光加工能获得更好的加工质量。