激光器
材料科学
准分子激光器
烧蚀
激光烧蚀
有限元法
污染
激光功率缩放
计算机模拟
瞬态(计算机编程)
光学
计算机科学
结构工程
工程类
模拟
航空航天工程
物理
操作系统
生物
生态学
作者
Sundar Marimuthu,Abdeslam Mhich,I. S. Molchan,David Whitehead,Z. B. Wang,Paul Mativenga,L. Li,Z. Liu,Clive Grafton-Reed,Simon Cheetham,S. Dilworth
摘要
Laser cleaning is a promising surface preparation technique for applications in high value manufacturing industries. However, understanding the effects of laser processing parameters on various types of contaminants and substrates, is vital to achieve the required cleaning efficacy and quality. In this paper, a two-dimensional transient numerical simulation was carried out to study the material ablation characteristics and substrate thermal effects in laser cleaning of aerospace alloys. Element birth and death method was employed to track the contaminant removal on the surface of the material. The result shows that contaminant ablation increases with laser power and number of pulses. The finite element method (FEM) model is capable enough to predict the optimum number of pulses and laser power required to remove various contaminants. Based on the simulation results, the mechanism of the excimer laser cleaning is proposed. Thus, the use of numerical simulation can be faster and cheaper method of establishing the optimum laser cleaning window and reducing the number of experimental tests.
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