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A study on laser-fiber coupling efficiency and ablation rate in femtosecond laser deep microdrilling

机译:飞秒激光深微钻中光纤耦合效率和烧蚀率的研究

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摘要

Laser microdrilling is a common micromachining operation in many industrial applications. This paper presents a new laser microdrilling technique in which a hollow-core fiber is employed to transmit femtosecond laser pulses to the target position. The coupling efficiency between the laser and the fiber is investigated and found to be strongly related to pulse energy and pulse duration. A parametric study on the ablation rate indicates that in microdrilling of a stainless steel (type 303), the operating parameters including pulse energy, pulse duration, sample thickness, focal length and sample-fiber distance can affect the ablation rate. The experimental results show that the new technique developed in this study is feasible to conduct microdrilling of holes with high aspect ratio.
机译:激光微钻是许多工业应用中常见的微加工操作。本文提出了一种新的激光微钻技术,其中使用空心光纤将飞秒激光脉冲传输到目标位置。研究了激光器和光纤之间的耦合效率,发现其与脉冲能量和脉冲持续时间密切相关。对消融速率的参数研究表明,在不锈钢(303型)的微钻中,包括脉冲能量,脉冲持续时间,样品厚度,焦距和样品纤维距离在内的运行参数会影响消融速率。实验结果表明,本研究开发的新技术对高深宽比的孔进行微钻是可行的。

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