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High-accuracy microdrilling of steel with solid state UV laser at a rate of 10 mm/sec

机译:高精度微钢,固态UV激光器以10mm /秒的速率

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We investigated wavelength- and intensity-dependence of ablation rate achievable with a diode-pumped Q-switched Nd:YAG laser with frequency doubling and tripling. The laser produced 15 ns-long pulses at a repetition rate of 10 kHz and output power of 28 W in the fundamental beam, and 15 W and 10 W in the second and third harmonics, respectively. We found that in thin stainless and carbon steel foils, fast ablation starts at the laser fluence level of 10 J/cm$+2$/. The ablation rate remains close to 1 $mu@m per pulse with very little change as the laser fluence increases by more than order of magnitude above this threshold exit of the hole. This attenuation is strongly dependent on the laser wavelength. Particularly, using third harmonic output, we were able to sustain average drilling speed of more than 1 $mu@m per pulse in samples up to 1 mm thick. At the same time, removal rate at fundamental wavelength decreased by almost an order of magnitude.
机译:我们调查了使用二极管泵浦的Q开关Nd:YAG激光器可实现的消融率的波长和强度依赖性,其具有倍频和三倍。激光在重复率为10kHz的重复速率和基部光束中的28W的输出功率分别在第二和第三次谐波中输出28W。我们发现,在薄的不锈钢和碳钢箔中,快速消融以激光频率为10 j / cm $ + 2 $ /。每次脉冲的消融率保持接近1 $ MU @ M脉冲,随着激光器的量度的增加,孔的激光量大增加而不是孔的阈值出口的阈值。该衰减强烈依赖于激光波长。特别是,使用三次谐波输出,我们能够在厚度为1毫米的样品中维持超过1 $ MU @ M×m的平均钻井速度。同时,基本波长的去除率几乎减少了几乎级。

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