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LASER DRILLING IN ABLATION REGIME: STUDY OF DRILLING VELOCITY WITH DECOUPLED Q-SWITCH LASER

机译:在消融制度中激光钻孔:用去耦Q开关激光研究钻孔速度研究

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摘要

Future generation of laser drilling processes for cooling systems in aeronautics couple ablation and percussion removal regimes. Percussion using ms pulse laser duration, produces deep holes with high productivity and ablation, with ns laser pulse duration, regime machines shape holes with high quality. Up to now, acousto-optic Q-switch Laser are mainly used for this micro-machining. However, energy/pulse duration/repetition rate are coupled not allowing a comprehensive approach of interaction mechanisms. In this paper, we explore laser drilling laser in ablation regime using an innovative laser from Trumpf company. This laser provides TEM00 laser beam with energy and pulse duration independent of repetition rate. So, drilling velocity has been measured as function of laser parameters. It saturates at high laser intensity and stays constant for repetition rate under 70 KHz. Results are discussed vs laser screening induced by plasma in half-confined geometry and residual particles produced by the ablation.
机译:航空冷却系统中的未来产生激光钻井工艺耦合和打击拆除制度。使用MS脉冲激光持续时间的打击乐器,生产率高的深孔,具有NS激光脉冲持续时间,制度机器孔的质量高。到目前为止,声光Q-Switch激光器主要用于这种微加工。然而,能量/脉冲持续时间/重复速率耦合不允许综合交互机制方法。在本文中,我们使用来自Trumpf公司的创新激光探索激光钻探激光器。该激光提供TEM00激光束,能量和脉冲持续时间与重复率无关。因此,已经测量了钻孔速度作为激光参数的功能。它以高激光强度饱和,保持恒定的重复率为70 kHz。讨论了通过蒸煮产生的半限制几何形状和残留颗粒的等离子体诱导的VS激光筛选。

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