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通过声发射的应用揭示脉冲激光加工的相互作用机制。

Revealing the interaction mechanism of pulsed laser processing with the application of acoustic emission.

作者信息

Liu Weinan, Rong Youmin, Yang Ranwu, Wu Congyi, Zhang Guojun, Huang Yu

机构信息

State Key Lab of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China.

School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Front Optoelectron. 2023 Jun 14;16(1):14. doi: 10.1007/s12200-023-00070-7.

Abstract

The mechanisms of interaction between pulsed laser and materials are complex and indistinct, severely influencing the stability and quality of laser processing. This paper proposes an intelligent method based on the acoustic emission (AE) technique to monitor laser processing and explore the interaction mechanisms. The validation experiment is designed to perform nanosecond laser dotting on float glass. Processing parameters are set differently to generate various outcomes: ablated pits and irregular-shaped cracks. In the signal processing stage, we divide the AE signals into two bands, main and tail bands, according to the laser processing duration, to study the laser ablation and crack behavior, respectively. Characteristic parameters extracted by a method that combines framework and frame energy calculation of AE signals can effectively reveal the mechanisms of pulsed laser processing. The main band features evaluate the degree of laser ablation from the time and intensity scales, and the tail band characteristics demonstrate that the cracks occur after laser dotting. In addition, from the analysis of the parameters of the tail band very large cracks can be efficiently distinguished. The intelligent AE monitoring method was successfully applied in exploring the interaction mechanism of nanosecond laser dotting float glass and can be used in other pulsed laser processing fields.

摘要

脉冲激光与材料之间的相互作用机制复杂且不明确,严重影响激光加工的稳定性和质量。本文提出一种基于声发射(AE)技术的智能方法来监测激光加工并探索相互作用机制。验证实验旨在对浮法玻璃进行纳秒激光打点。设置不同的加工参数以产生各种结果:烧蚀坑和不规则形状的裂纹。在信号处理阶段,我们根据激光加工持续时间将AE信号分为两个频段,即主频段和尾频段,分别研究激光烧蚀和裂纹行为。通过结合AE信号的框架和帧能量计算的方法提取的特征参数可以有效地揭示脉冲激光加工的机制。主频段特征从时间和强度尺度评估激光烧蚀程度,尾频段特征表明裂纹在激光打点后出现。此外,通过对尾频段参数的分析,可以有效区分非常大的裂纹。智能AE监测方法成功应用于探索纳秒激光打点浮法玻璃的相互作用机制,可用于其他脉冲激光加工领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7772/10267076/ac3999589062/12200_2023_70_Fig1_HTML.jpg

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