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Precision glass machining, drilling, and profile cutting by short pulse lasers

机译:通过短脉冲激光进行精密的玻璃加工,钻孔和轮廓切割

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摘要

Demands for producing micro-crack free, high quality and high-aspect ratio microholes and microfeatures in glass substrates have been increasing for a number of applications such as in MEMS device packaging, optical fibre alignment, mini-vision systems and microelectronic packaging. However, due to the poor thermal properties of most glasses the fabrication of finely machined features, e.g. grooves, microholes etc. has been a challenging task. In this study, short pulse solid-state lasers with pulse duration in the ns to fs range were used to process different types of glass materials. The effect of the pulse duration and other process parameters on the machined features was analyzed to reveal the underlying thermal effects and nonlinear processes. Edge quality, circularity, aspect ratio, formation of the redeposit material and machining rate were also studied with respect to the process variables such as focusing optics, laser power, wavelength and repetition rate. Arrays of drilled micro-hole patterns and fabricated microfeatures are demonstrated with discussions on their potential applications.
机译:在许多应用中,例如在MEMS器件封装,光纤对准,微型视觉系统和微电子封装中,在玻璃基板上生产无微裂纹,高质量和高纵横比的微孔和微特征的需求不断增长。然而,由于大多数玻璃的差的热性能,因此需要制造精细加工的特征,例如玻璃。沟槽,微孔等一直是一项艰巨的任务。在这项研究中,使用脉冲持续时间在ns到fs范围内的短脉冲固态激光器来处理不同类型的玻璃材料。分析了脉冲持续时间和其他过程参数对加工特征的影响,以揭示潜在的热效应和非线性过程。还针对工艺变量(例如聚焦光学器件,激光功率,波长和重复率)研究了边缘质量,圆度,长宽比,再沉积材料的形成和加工速度。通过讨论其潜在的应用,展示了一系列钻孔微孔图案和制造的微特征。

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