Cao Jinkui, Ma Baoji, Li Liangliang, Li Xiangyu, Xu Chaopeng, Wang Xinbo
School of Mechatronic Engineering, Xi'an Technological University, Xi'an 710021, China.
Langmuir. 2024 Nov 5;40(44):23218-23229. doi: 10.1021/acs.langmuir.4c02455. Epub 2024 Oct 21.
The phenomenon of femtosecond laser ablation of convex structures from the bottom to the top is interesting. In this study, AZ31B magnesium alloy was used as the substrate to analyze the impact of the laser pulse energy and scanning speed on the morphology of concave-convex microstructures. Subsequently, a unified two-dimensional numerical model incorporating solid, liquid, and gas phases was established, and combined with experimental data, the mechanism and formation process of concave-convex transformation in magnesium alloy under laser ablation were revealed. The results indicate that the transition from concave to convex structures is significantly influenced by the laser scanning speed, whereas the laser pulse energy primarily affects the shape and size of the convex structures. During the ablation process, molten material is expelled and gradually accumulates on both sides of the ablation groove under the action of the recoil pressure. During cooling, the molten material at both ends of the groove merges to form protrusions under the combined effects of internal negative pressure, gravity, and Marangoni forces. Moreover, this method of femtosecond laser ablation for generating convex structures deviates from the traditional single-texture approach to concave structures, potentially broadening the application of laser composite processing surfaces.
飞秒激光从底部到顶部烧蚀凸结构的现象很有趣。在本研究中,以AZ31B镁合金为基底,分析激光脉冲能量和扫描速度对凹凸微结构形貌的影响。随后,建立了一个包含固相、液相和气相的统一二维数值模型,并结合实验数据,揭示了镁合金在激光烧蚀下凹凸转变的机理和形成过程。结果表明,从凹结构到凸结构的转变受激光扫描速度的显著影响,而激光脉冲能量主要影响凸结构的形状和尺寸。在烧蚀过程中,熔融材料被排出,并在反冲压力的作用下逐渐堆积在烧蚀槽的两侧。冷却过程中,槽两端的熔融材料在内部负压、重力和马兰戈尼力的共同作用下合并形成凸起。此外,这种飞秒激光烧蚀生成凸结构的方法不同于传统的单一纹理凹结构加工方法,可能会拓宽激光复合加工表面的应用范围。