首页> 外文会议>Opto-Ireland 2002: Optics and Photonics Technologies and Applications >Investigation of a method for the determination of the focussed spot size of industrial laser beams based on the drilling of holes in Mylar film
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Investigation of a method for the determination of the focussed spot size of industrial laser beams based on the drilling of holes in Mylar film

机译:基于在聚酯薄膜上钻孔的工业激光束聚焦光斑尺寸确定方法的研究

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The focussed spot size of industrial laser beams is a critical processing parameter in most laser machining applications as it determines the machined feature size and the irradiance produced by the laser at the material interface. There are a number of standard methods available for accurately measuring and analysing the focussed spot. These methods often require expensive equipment that can be time consuming and difficult to set up in a production environment. This paper presents an investigation into a cost effective and straightforward method for the measurement of focussed laser spot sizes based on drilling of holes in mylar film. It can be shown that the slope of a plot of the square of the hole diameter versus the natural log of the laser pulse energy is equal to twice the square of the spot radius. A measure of the laser spot size can be calculated by generating laser-drilled holes at number of laser pulse energies. The practicality and accuracy of this method is investigated in this paper for a number of laser types including a diode pumped solid state laser (UV DPSS) operating at the third harmonic (355nm), a femtosecond laser and a flash lamp pumped Nd:YAG laser. A comparison between the measured results and the results generated with other available techniques is also presented.
机译:在大多数激光加工应用中,工业激光束的聚焦光斑尺寸是关键的加工参数,因为它决定了加工后的特征尺寸以及激光在材料界面处产生的辐照度。有许多标准方法可用于准确测量和分析聚焦点。这些方法通常需要昂贵的设备,这些设备可能很耗时并且很难在生产环境中设置。本文介绍了一种基于聚脂薄膜钻孔的经济有效,简单的方法来测量聚焦激光光斑的尺寸。可以看出,孔径的平方与激光脉冲能量的自然对数的关系曲线的斜率等于光斑半径的平方的两倍。可以通过以一定数量的激光脉冲能量生成激光钻孔来计算激光光斑大小的度量。本文针对多种激光器类型研究了该方法的实用性和准确性,包括在三次谐波(355nm)下工作的二极管泵浦固态激光器(UV DPSS),飞秒激光器和闪光灯泵浦Nd:YAG激光器。 。还介绍了测量结果与其他可用技术生成的结果之间的比较。

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