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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Microfabrication and Drilling Using Diffraction-Free Pulsed Laser Beam Generated with Axicon Lens
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Microfabrication and Drilling Using Diffraction-Free Pulsed Laser Beam Generated with Axicon Lens

机译:使用Axicon透镜产生的无衍射脉冲激光束进行微细加工和钻孔

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摘要

Laser microfabrication using a diffraction-free beam (Bessel beam) was performed. Microfabrication with a deep focal depth is possible because a diffraction-free beam has a main lobe with a small diameter, which does not depend on propagation length. The diffraction-free beam was generated using an axicon lens, and the generation was confirmed using an optical microscopy image of a laser-fabricated spot on a silicon wafer. Nevertheless using a nanosecond pulsed Nd:YAG laser, microfabrication with a spot diameter < 1μm was realized. As a result of the deep focal depth of the diffraction-free beam, even if we change the work distance within a range of several millimeters, we are still able to maintain the diameter of the laser- fabricated spots to approximately 1μm. Since an almost straight penetration hole with a diameter of 3μm was drilled into SUS304 foil (20μm thick), it was found that the diffraction-free beam has a high feasibility for the high-aspect-ratio laser drilling of an opaque material due to its deep focal depth.
机译:使用无衍射光束(贝塞尔光束)进行激光微加工。具有深焦点深度的微细加工是可能的,因为无衍射光束的主瓣直径较小,这与传播长度无关。使用轴锥透镜产生无衍射光束,并且使用硅晶片上的激光加工点的光学显微镜图像确认产生该光束。尽管如此,使用纳秒脉冲Nd:YAG激光器仍可以实现光斑直径<1μm的微细加工。由于无衍射光束的聚焦深度很深,即使我们将工作距离改变在几毫米的范围内,我们仍然能够将激光加工光斑的直径保持在大约1μm。由于在304厚度为20μm的SUS304箔上钻了一个直径为3μm的几乎直的通孔,因此发现无衍射光束由于其不透明材料的高纵横比激光钻孔具有很高的可行性。深焦深。

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