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Cumulative damage effects in different machining strategies for 2.5D laser micro structuring of polyimide

机译:二酰亚胺2.5d激光微结构不同加工策略中的累积损伤效应

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Polymers play an important role in many applications such as microelectronics and medical devices. Micro-channels and shaped holes can be produced by 2.5D micro-structuring with excimer laser sources using mask projection. The industrial cost associated with these processes can be greatly reduced by the use of solid-state lasers due to their lower cost and maintenance. For this purpose, we investigate the interaction of polyimide (Kapton™) with solid-state lasers emitting in the UV (266 & 355 nm) spectral range. The study presents a comparison of the ablation profiles obtained for different laser sources and these are discussed in term of roughness and efficiency. Limitations on the actual motion system (scan-head) are evident and the need to control the material removed by a small Gaussian beam in terms of overlapping for the direct writing process will be highlighted.
机译:聚合物在许多诸如微电子和医疗器械的许多应用中起重要作用。微通道和成形孔可以通过使用掩模投影的准分子激光源的2.5D微结构生产。由于成本和维护较低,通过使用固态激光器,可以大大减少与这些过程相关的工业成本。为此目的,我们研究了聚酰亚胺(Kapton™)的相互作用与UV(266&355nm)光谱范围内发出的固态激光器。该研究介绍了对不同激光源获得的消融谱的比较,并且这些粗糙度和效率讨论这些。将突出显示对实际运动系统(Scan-Head)的限制,并且需要控制由小高斯光束除以直接写入过程的重叠的材料。

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