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双光束组合激光高效耦合到微水射流中用于深度加工。

Efficient coupling of dual beam combined laser into micro water jet for deep processing.

作者信息

Wang Ji, Chen Chunguang, Wang Guolong, Cheng Kaijie, Zhang Wenwu

机构信息

Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Science, Zhejiang, 315201, Ningbo, China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Sci Rep. 2025 Jan 7;15(1):1083. doi: 10.1038/s41598-025-85552-8.

Abstract

In order to improve the power and energy of water-jet-guided laser, this paper introduces a double beam water-jet-guided laser (DWJL) technology. Based spatially polarized light combination and temporal phase modulation, two lasers are effectively coupled into a water jet with diameter of 100 μm. The maximum output peak power reaches 100 kW and the maximum pulse energy is 4.63 mJ with an operation frequency range from 1 to 20 kHz. The coupling efficiency is as high as 90.4%. Its efficient energy utilization offers new solutions for precision cutting and processing of thick materials. Ultimately, the machining capability of high-power/high-energy DWJL was demonstrated by cutting through 7075 aluminum alloys of varying thicknesses. The cutting depth reaches 10.61 mm, corresponding to a depth-to-width ratio of the cutting gap exceeds 90:1, and the taper is only approximately 0.23°. There is no heat-affected ablation zone on the processed surface. For deep micro holes processing, a minimum radius is 248.54 μm with a depth-to-diameter ratio of 21:1. As the ongoing development of DWJL technology, this innovation is anticipated to find broader applications in aerospace, automotive manufacturing, and high-end equipment manufacturing in the future.

摘要

为了提高水导激光的功率和能量,本文介绍了一种双光束水导激光(DWJL)技术。基于空间偏振光组合和时间相位调制,两台激光器被有效地耦合到直径为100μm的水射流中。最大输出峰值功率达到100kW,最大脉冲能量为4.63mJ,工作频率范围为1至20kHz。耦合效率高达90.4%。其高效的能量利用为厚材料的精密切割和加工提供了新的解决方案。最终,通过切割不同厚度的7075铝合金,展示了高功率/高能量DWJL的加工能力。切割深度达到10.61mm,对应切割缝隙的深宽比超过90:1,锥度仅约为0.23°。加工表面没有热影响烧蚀区。对于深微孔加工,最小半径为248.54μm,深径比为21:1。随着DWJL技术的不断发展,预计这项创新未来将在航空航天、汽车制造和高端装备制造等领域得到更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/833e/11707084/3270559ba8f4/41598_2025_85552_Fig1_HTML.jpg

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