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Numerical simulation of short-pulsed laser processing of materials

机译:材料短脉冲激光加工的数值模拟

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摘要

A numerical study of the short-pulsed laser-induced evaporation process is presented. For short-pulsed laser operation, the radiation penetration depths of most nonmetallic engineering materials are of the same order of magnitude as or of higher order of magnitude than the heat diffusion depth. Thus, the materials must be treated as semitransparent media during short-pulsed laser material processing. A quasi-one-dimensional model is developed to predict the two-dimensional heat conduction inside the solid. It is assumed that the conduction losses are normal to the surface and the ablation velocity is governed by an Arhennius equation. The model is solved using an integral method. The numerical simulations of the laser processing of ceramics are carried out. The results indicate that the radiation penetration depths of the materials make significant differences in the groove shape, heat losses, and the temperature field during short-pulsed laser operations. [References: 14]
机译:给出了短脉冲激光诱导蒸发过程的数值研究。对于短脉冲激光操作,大多数非金属工程材料的辐射穿透深度与热扩散深度的数量级相同或更高。因此,在短脉冲激光材料加工过程中,必须将材料视为半透明介质。建立了准一维模型来预测固体内部的二维热传导。假定传导损耗垂直于表面,并且消融速度由Arhennius方程控制。使用积分方法求解模型。进行了陶瓷激光加工的数值模拟。结果表明,在短脉冲激光操作过程中,材料的辐射穿透深度在凹槽形状,热损失和温度场方面产生了显着差异。 [参考:14]

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