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Numerical Modeling of 193-nm Excimer Laser Ablation on CR-39 Polymer

机译:193-NM准分子激光烧蚀对CR-39聚合物的数值模拟

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摘要

Laser polymer processing has evolved into an important field of applied and fundamental research. Allyl diglycol carbonate or CR-39 is considered an important polymer for use in optical and medical applications since it is a hard and infusible thermoset plastic that is insoluble in all solvents. The temperature distribution of CR-39 when subjected to irradiation during 193-nm excimer laser ablation was investigated. An effective simulation was developed to reflect the effects of polymer thermal diffusion, laser fluence, beam geometry, and number of pulses. A two-dimensional finite element model was used to predict the temperature distribution and ablation depth in the plastic CR-39 polymer under the 193-nm laser ablation process. The photochemical threshold ablation fluence was 750mJ/cm(2) for a single laser pulse, but dropped to 240mJ/cm(2) for repetitive laser pulses. At higher fluence, thermal effects exhibited a slight contribution to the ablation process. For fluence750mJ/cm(2), the ablation depth increased abruptly. It can thus be inferred that the rate of temperature increase with pulse number increased concomitantly with the fluence. Thus, thermal effects are a significant factor in the ablation process.
机译:激光聚合物加工已经发展成为应用和基本研究的重要领域。烯丙基碳酸酯碳酸酯或Cr-39被认为是用于光学和医疗应用的重要聚合物,因为它是一种硬质且不稳定的热固性塑料,其不溶于所有溶剂。研究了在193-NM准分子激光烧蚀期间进行辐射时Cr-39的温度分布。开发了有效的模拟,以反映聚合物热扩散,激光器流量,梁几何和脉冲数的影响。在193-nm激光烧蚀过程下,使用二维有限元模型预测塑料CR-39聚合物中的温度分布和消融深度。用于单激光脉冲的光化学阈值消融量为750mJ / cm(2),但掉落至240mJ / cm(2),用于重复激光脉冲。在较高的流量下,热效应对消融过程表现出略有贡献。对于FLUENCE750MJ / cm(2),消融深度突然增加。因此,可以推断它具有脉冲数的温度升高率伴随着流量。因此,热效应是消融过程中的重要因素。

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