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3D transient model to predict temperature and ablated areas during laser processing of metallic surfaces

机译:3D瞬态模型可预测金属表面的激光加工过程中的温度和烧蚀面积

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Laser processing is one of the most popular small-scale patterning methods and has many applications in semiconductor device fabrication and biomedical engineering. Numerical modelling of this process can be used for better understanding of the process, optimization, and predicting the quality of the final product. An accurate 3D model is presented here for short laser pulses that can predict the ablation depth and temperature distribution on any section of the material in a minimal amount of time. In this transient model, variations of thermal properties, plasma shielding, and phase change are considered. Ablation depth was measured using a 3D optical profiler. Calculated depths are in good agreement with measured values on laser treated titanium surfaces. The proposed model can be applied to a wide range of materials and laser systems.
机译:激光加工是最流行的小型图案化方法之一,在半导体器件制造和生物医学工程中有许多应用。此过程的数值建模可用于更好地了解过程,优化和预测最终产品的质量。此处针对短激光脉冲提供了精确的3D模型,该模型可以在最短的时间内预测材料任何部分的烧蚀深度和温度分布。在此瞬态模型中,考虑了热特性,等离子体屏蔽和相变的变化。使用3D光学轮廓仪测量消融深度。计算的深度与激光处理钛表面上的测量值高度吻合。提出的模型可以应用于各种材料和激光系统。

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