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Femtosecond Laser Ablation Properties of Transparent Materials:Impact of the laser process parameters on the machining throughput

机译:透明材料的飞秒激光烧蚀性能:激光工艺参数对加工吞吐量的影响

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High average power, high repetition rate femtosecond lasers with μJ pulse energies are increasingly used for bio-medical and material processing applications. With the introduction of femtosecond laser systems such as the Spirit? platform developed by High Q Lasers and Spectra-Physics, micro-processing of solid targets with femtosecond laser pulses have obtained new perspectives for industrial applications [1]. The unique advantage of material processing with subpicosecond lasers is efficient, fast and localized energy deposition, which leads to high ablation efficiency and accuracy in nearly all kinds of solid materials. The study on the impact of the laser processing parameters on the removal rate for transparent substrate using femtosecond laser pulses will be presented. In particular, examples of micro-processing of poly-L-lactic acid (PLLA) - bio-degradable polyester and Xensation? glass (Schott) machined with SpiritTM ultrafast laser will be shown.
机译:具有μJ脉冲能量的高平均功率,高重复率Femtosecond激光器越来越多地用于生物医疗和材料处理应用。通过引入精神等飞秒激光系统?高Q激光和光谱物理开发的平台,具有飞秒激光脉冲的固体目标的微处理已经获得了工业应用的新观点[1]。材料加工具有亚磷二激光激光器的独特优势是有效,快速和局部的能量沉积,这在几乎各种固体材料中导致高嗜肥效率和准确性。展示了对使用飞秒激光脉冲的透明基板对透明基板去除率的影响的研究。特别地,聚-L-乳酸(PLLA)的微处理微处理的实例 - 生物可降解聚酯和XINSONATION?将显示用Spiritm UltraFast激光加工的玻璃(SCHOTT)。

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