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Analytical model for CO2 laser ablation of fused quartz

机译:熔融石英CO2激光烧蚀的解析模型

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This paper reports the development of an analytical model, with supporting experimental data, which quite accurately describes the key features of CO2 laser ablation of fused silica glass. The quantitative model of non-explosive, evaporative material removal is shown to match the experimental data very well, to the extent that it can be used as a tool for ablative measurements of absorption coefficient and vaporization energy. The experimental results indicated that a minimum of 12 MJkg(-1) is required to fully vaporize fused quartz initially held at room temperature, which is in good agreement with the prediction of the model supplied with input data available in the literature. An optimal window for the machining of fused quartz was revealed in terms of pulse duration 20-80 mu s and CO2 laser wavelength optimized for maximum absorption coefficient. Material removal rates of 0.33 mu m per J cm(-2) allow for a high-precision depth control with modest laser stability. The model may also be used as a parameter selection guide for CO2 laser ablation of fused silica or other materials of similar thermophysical properties. (c) 2015 Optical Society of America
机译:本文报告了分析模型的发展以及支持的实验数据,该模型相当准确地描述了熔融石英玻璃CO2激光烧蚀的关键特征。结果表明,非爆炸性,蒸发性物质去除的定量模型与实验数据非常吻合,在一定程度上可以用作消融测量吸收系数和蒸发能的工具。实验结果表明,要完全汽化最初保持在室温下的熔融石英,至少需要12 MJkg(-1),这与文献中提供的输入数据所提供的模型预测相符。根据脉冲持续时间20-80μs和为最大吸收系数而优化的CO2激光波长,揭示了用于加工熔融石英的最佳窗口。每J cm(-2)的材料去除率为0.33微米,可实现高精度的深度控制以及适度的激光稳定性。该模型还可以用作CO2激光烧蚀熔融石英或其他具有类似热物理特性的材料的参数选择指南。 (c)2015年美国眼镜学会

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