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基于脉冲贝塞尔光束的蓝宝石通孔微钻削研究

Study of Through-Hole Micro-Drilling in Sapphire by Means of Pulsed Bessel Beams.

作者信息

Kuriakose Akhil, Bollani Monica, Di Trapani Paolo, Jedrkiewicz Ottavia

机构信息

IFN-CNR, Udr di Como, Via Valleggio 11, 22100 Como, Italy.

Dipartimento di Scienza e Alta Tecnologia, Università dell'Insubria, Via Valleggio 11, 22100 Como, Italy.

出版信息

Micromachines (Basel). 2022 Apr 15;13(4):624. doi: 10.3390/mi13040624.

Abstract

Ultrashort Bessel beams have been used in this work to study the response of a 430-μm-thick monocrystalline sapphire sample to laser-matter interaction when injecting the beam orthogonally through the whole sample thickness. We show that with a 12° Bessel beam cone angle, we are able to internally modify the material and generate tailorable elongated microstructures while preventing the formation of surface cracks, even in the picosecond regime, contrary to what was previously reported in the literature. On the other hand, by means of Bessel beam machining combined with a trepanning technique where very high energy pulses are needed, we were able to generate 100 μm diameter through-holes, eventually with negligible cracks and very low taper angles thanks to an optimization achieved by using a 60-μm-thick layer of Kapton Polyimide removable tape.

摘要

在这项工作中,使用了超短贝塞尔光束来研究厚度为430μm的单晶蓝宝石样品在光束垂直穿过整个样品厚度时对激光与物质相互作用的响应。我们表明,对于12°的贝塞尔光束锥角,即使在皮秒 regime下,我们也能够在内部对材料进行改性并生成可定制的细长微结构,同时防止表面裂纹的形成,这与文献中先前报道的情况相反。另一方面,通过将贝塞尔光束加工与需要非常高能量脉冲的套孔技术相结合,我们能够生成直径为100μm的通孔,由于使用了60μm厚的聚酰亚胺可移除胶带实现了优化,最终裂纹可忽略不计且锥角非常小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d540/9028483/218a685a91da/micromachines-13-00624-g001.jpg

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