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用于脉冲激光微加工应用的光束遮挡技术的实际比较

A Practical Comparison of Beam Shuttering Technologies for Pulsed Laser Micromachining Applications.

作者信息

Aboud Damon G K, Wood Michael J, Zeppetelli Gianluca, Joy Nithin, Kietzig Anne-Marie

机构信息

Department of Chemical Engineering, McGill University, Montreal, QC H3A 0C5, Canada.

出版信息

Materials (Basel). 2022 Jan 25;15(3):897. doi: 10.3390/ma15030897.

Abstract

In this report we investigate the performance of various beam shutter technologies when applied to femtosecond laser micromachining. Three different shutter options are considered: a mechanical blade shutter, a bistable rotary solenoid shutter, and an electro-optic modulator (EOM) shutter. We analyzed the behavior of each shutter type during repeated open/close commands (period of 10 ≤ ≤ 200 ms) using both high-speed videography and practical micromachining experiments. To quantify the performance at varying cycle periods, we introduce a new variable called the compliance that characterizes the average state of the shutter with respect to its intended position. We found that the solenoid shutter responds poorly to sequential commands. The mechanical shutter provides reliable performance for cycled commands as short as = 40 ms, but begins to lag significantly behind the control signal for ≤ 20 ms. The EOM shutter provides the most precise and reliable performance, with an opening time of only 0.6 ms and a high compliance with the signal commands, even when cycled very quickly ( = 10 ms). Overall, this study acts as an extensive practical guide for other laser users when considering different shutter options for their laser system and desired application.

摘要

在本报告中,我们研究了各种光束快门技术应用于飞秒激光微加工时的性能。考虑了三种不同的快门选项:机械叶片快门、双稳态旋转螺线管快门和电光调制器(EOM)快门。我们使用高速摄像和实际微加工实验,分析了每种快门类型在重复打开/关闭命令(周期为10≤≤200毫秒)期间的行为。为了量化不同周期的性能,我们引入了一个名为顺应性的新变量,它表征了快门相对于其预期位置的平均状态。我们发现螺线管快门对顺序命令的响应较差。机械快门对于短至=40毫秒的循环命令提供可靠的性能,但对于≤20毫秒的情况开始明显滞后于控制信号。EOM快门提供了最精确和可靠的性能,开启时间仅为0.6毫秒,并且即使在非常快速循环(=10毫秒)时也能高度顺应信号命令。总体而言,本研究为其他激光用户在为其激光系统和所需应用考虑不同快门选项时提供了一份详尽的实用指南。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e51/8839459/7667c0795a8c/materials-15-00897-g001.jpg

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