Dong Hang, Li Jingyi, Li Yahui, Zhang Wei, Jin Guangyong
Appl Opt. 2023 Oct 10;62(29):7805-7811. doi: 10.1364/AO.500675.
In this paper, a theoretical model for laser cleaning of aluminium alloy oxide film is presented from the perspective of thermal stress. Additionally, we developed a two-dimensional axisymmetric finite element model for calculation. Thermal stresses result from thermal expansion. Using thermodynamic equations, numerical calculations enable the determination of a theoretical cleaning threshold by comparing the thermal stresses to the adhesion between the oxide film and the substrate. Through theory and experiments, it is known that the greater the laser fluence, the better is the cleaning effect. The findings indicate that cleaning of the oxide film on aluminum alloys can be achieved under appropriate parameters. The cleaning threshold for laser cleaning of the oxide film is determined to be 3629.47/ (continuous laser fluence is 3628.73/ ; nanosecond laser fluence is 0.74/ ). The thermal stress model of laser cleaning is highly useful for selecting the appropriate laser flux in practical applications. Both a simulation and experimental results can provide an explanation for the mechanism of interaction between the laser and the aluminum alloy oxide film, demonstrating that thermal stress is one of the cleaning mechanisms during the laser cleaning process of the oxide film.
本文从热应力角度提出了铝合金氧化膜激光清洗的理论模型。此外,我们开发了用于计算的二维轴对称有限元模型。热应力由热膨胀产生。利用热力学方程,通过将热应力与氧化膜和基底之间的附着力进行比较,数值计算能够确定理论清洗阈值。通过理论和实验可知,激光能量密度越大,清洗效果越好。研究结果表明,在适当参数下可实现铝合金氧化膜的清洗。确定氧化膜激光清洗的阈值为3629.47/ (连续激光能量密度为3628.73/ ;纳秒激光能量密度为0.74/ )。激光清洗热应力模型对实际应用中选择合适的激光通量非常有用。模拟和实验结果都能为激光与铝合金氧化膜的相互作用机理提供解释,表明热应力是氧化膜激光清洗过程中的清洗机制之一。