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EFFECTS OF MULTIPLE REFLECTIONS ON HOLE FORMATION DURING SHORT-PULSED LASER DRILLING

机译:短脉冲激光钻孔过程中多次反射对孔形成的影响

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Beam guiding effects during laser drilling due to multiple specular reflections inside the hole are analyzed for the case of very short laser pulses (ns range). Specular reflections are valid for materials that retain a smooth surface during laser evaporation (small optical roughness compared to the laser wavelength). The problem is assumed to be 2D axisymmetric (unpolarized laser), with the hole geometry defined by nodal values connected through a cubic spline. The net radiative flux onto a surface node is determined through ray tracing methods. The resulting absorbed laser flux is combined with a' simple quasi-one-dimensional conduction model (to assess the minor conduction losses) and an Arrhenius evaporation rate model, to predict hole development as a function of time through iteration. To stabilize this highly nonlinear and thus unstable problem (in numerical analysis as well as in experiments) the laser beam is diffused a small amount from the specular direction (to also account for the limitation that no beam can be focused down to a point), and by periodic slight smoothing of the irradiation levels. Results show that drilling rates are increased dramatically due to beam trapping for highly reflective materials, resulting in a more pointed hole profile.
机译:针对非常短的激光脉冲(ns范围)的情况,分析了由于孔内多次镜面反射而导致的激光钻孔过程中的光束引导效果。镜面反射对于在激光蒸发过程中保持光滑表面(与激光波长相比具有较小的光学粗糙度)的材料有效。假定问题是二维轴对称(非偏振激光),其孔的几何形状由通过三次样条连接的节点值定义。通过射线追踪方法确定到达表面节点的净辐射通量。所产生的吸收激光通量与简单的准一维传导模型(以评估较小的传导损耗)和Arrhenius蒸发速率模型相结合,以预测通过迭代产生的随时间变化的空穴。为了稳定这个高度非线性且因此不稳定的问题(在数值分析和实验中),激光束从镜面方向扩散了少量(还考虑了无法将光束聚焦到一点的限制),并通过定期略微平滑照射水平。结果表明,由于高反射性材料的束流捕获,钻孔速率显着提高,从而使孔轮廓更加尖锐。

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