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Micromachining using pulse bursts: Influence of the pulse duration and the number of pulses in the burst on the specific removal rate

机译:使用脉冲突发的微加工:脉冲持续时间和突发中的脉冲数对特定去除率的影响

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The today available ultra-short pulsed laser systems offer average power in the range of 100 W or even more resulting in high pulse energies. In contrast to treat metals only moderate peak fluences are required to work at the well-known optimum point, where the ablation process is most energy efficient. In a standard setup the laser beam is deflected by a galvo scanner. The achievable scan speed is limited and therefore also the usable repetition frequency and average power. The use of pulse bursts instead of single pulses is a possibility to further increase the ablation rate, i.e. using higher average power. This further increase is crucial for the usage of the ultra-short pulses in industrial applications. It was shown in previous publications that the number of pulses in the burst have a significant influence on the specific removal rate in case of ps pulses. It was observed, that the second pulse of a 2-pulse burst is shielded by the particle plume of the first pulse of the burst. It is believed that the shielding effect depends on the particle density of the plume, thus the effect should be stronger if more material is ablated. As already known, a decrease of the pulse duration to a few hundreds of fs leads to an increase of the specific removal rate for single pulses. In this work we investigate the influence of pulse bursts on the specific removal rate as well as the pulse duration on the ablation process using pulse bursts.
机译:当今可用的超短脉冲激光系统提供100 W甚至更高的平均功率,从而产生高脉冲能量。与处理金属相反,仅要求中等的峰值通量就可以在众所周知的最佳点工作,在该点上,烧蚀过程最节能。在标准设置中,激光振镜由振镜扫描仪偏转。可达到的扫描速度受到限制,因此也会受到可用的重复频率和平均功率的限制。使用脉冲猝发代替单个脉冲是可能进一步提高消融速率,即使用更高的平均功率。对于工业应用中超短脉冲的使用,这一进一步的增长至关重要。在以前的出版物中表明,在ps脉冲的情况下,脉冲串中的脉冲数对特定的去除率有重要影响。观察到,2脉冲猝发的第二脉冲被猝发的第一脉冲的颗粒羽遮蔽。据认为,屏蔽效果取决于羽流的颗粒密度,因此,如果烧蚀更多的材料,效果应更强。众所周知,将脉冲持续时间减少到数百fs会导致单个脉冲的比去除率增加。在这项工作中,我们研究了脉冲猝发对特定去除率的影响以及脉冲持续时间对使用脉冲猝发的消融过程的影响。

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