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Boundary conditions for 3D dynamic models of ablation of ceramics by pulsed mid-infrared lasers

机译:脉冲中红外激光烧蚀陶瓷3D动态模型的边界条件

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We present and discuss a set of boundary conditions (BCs) to use in three-dimensional, mesoscopic, finite element models of mid-infrared pulsed laser ablation of brittle materials. These models allow the study of the transient displacement and stress fields generated at micrometer scales during and after one laser pulse, where using conventional BCs may lead to some results without physical significance that can be considered an artefact of the calculations. The proposed BCs are tested and applied to a micrometer-scale continuous model of human dental enamel under CO_2 radiation (10.6 μm, 0.35 μs pulse, sub-ablative fluence), giving rise to the following results: the highest stress is obtained at the irradiated surface of the model, at the end of the laser pulse, but afterwards it decreases rapidly until it becomes significantly lower than the stress in a region 2.5 μm deep in the model; a thermally induced vibration in the material is predicted. This non-intuitive dynamics in stress and displacement distribution cannot be neglected and has to be considered in dynamic laser ablation models, since it may have serious implications in the mechanisms of ablation.
机译:我们提出并讨论了一组边界条件(BCs),用于脆性材料的中红外脉冲激光烧蚀的三维介观有限元模型。这些模型允许研究在一个激光脉冲期间和之后在微米尺度上产生的瞬态位移和应力场,其中使用常规BC可能会导致一些没有物理意义的结果,可以认为是计算的伪像。测试了建议的BCs,并将其应用于在CO_2辐射(10.6μm,0.35μs脉冲,亚烧蚀通量)下的人类牙釉质的微米级连续模型,得出以下结果:在辐照下获得最高应力模型的表面,在激光脉冲结束时,但是随后迅速减小,直到变得明显低于模型深2.5μm区域中的应力为止;可以预测材料中的热感应振动。应力和位移分布的这种非直觉的动力学不可忽略,必须在动态激光烧蚀模型中加以考虑,因为它可能对烧蚀的机理产生严重影响。

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