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利用兆赫兹脉冲串的超短脉冲激光烧蚀对不锈钢进行超光滑微铣削加工

Ultrasmooth Micromilling of Stainless Steel by Ultrashort Pulsed Laser Ablation Using MHz Bursts.

作者信息

Jia Xiao, Vrijburg Folkert, Zhang Wei, Groenendijk Max, Pei Yutao

机构信息

Department of Advanced Production Engineering, Engineering and Technology Institute Groningen, Faculty of Science and Engineering, University of Groningen, Nijenborgh 4, Groningen, 9747 AG, The Netherlands.

Philips Personal Care, Oliemolenstraat 5, Drachten, 9203 ZN, The Netherlands.

出版信息

ACS Appl Mater Interfaces. 2025 Feb 5;17(5):7989-8002. doi: 10.1021/acsami.4c19517. Epub 2025 Jan 22.

Abstract

Ultrashort pulsed (USP) laser burst ablation has attracted numerous interests for its great potential in enhancing ablation efficiency and reducing the heat-affected zone. However, little attention has been paid to the influence of burst ablation on the processed surface quality. To fill this research gap, the present study conducts a comprehensive investigation on the surface processing of stainless steel using ultrashort pulsed laser burst ablation. Systematic experiments have been carried out to investigate influences of pulse number per burst (PpB), pulse fluence, and burst overlap ratio on surface quality and ablation efficiency. A two-dimensional model has been developed to unveil the fundamental thermodynamic process and evolution of ablation and melting in material during USP laser burst ablation. Compared to single-pulse ablation, the optimum ablation efficiency decreases with increasing PpB by less than 30% in burst ablation. Despite reduced ablation efficiency, burst-mode ablation can generate much better surface quality, achieving an ultrasmooth surface with an roughness as low as 0.13 μm. Burst ablation generates distinctive surface structures compared to single-pulse ablation, and their formation mechanisms are scrutinized. The thickness of the surface melting layer is unveiled to determine surface morphology. Based on transmission electron microscopy (TEM) analysis and numerical simulation, a melting layer thickness between 100 and 320 nm is found to result in smooth surfaces. This work highlights the advantage of burst-mode ablation in achieving ultrasmooth surfaces on stainless steel and unveils the fundamental mechanisms of surface structures formation in USP laser burst ablation.

摘要

超短脉冲(USP)激光脉冲串烧蚀因其在提高烧蚀效率和减少热影响区方面的巨大潜力而备受关注。然而,脉冲串烧蚀对加工表面质量的影响却很少受到关注。为了填补这一研究空白,本研究对使用超短脉冲激光脉冲串烧蚀的不锈钢表面加工进行了全面研究。进行了系统实验,以研究每串脉冲数(PpB)、脉冲能量密度和脉冲串重叠率对表面质量和烧蚀效率的影响。建立了一个二维模型,以揭示超短脉冲激光脉冲串烧蚀过程中材料烧蚀和熔化的基本热力学过程及演变。与单脉冲烧蚀相比,在脉冲串烧蚀中,最佳烧蚀效率随着PpB的增加而降低,但降幅小于30%。尽管烧蚀效率有所降低,但脉冲串模式烧蚀可以产生更好的表面质量,实现粗糙度低至0.13μm的超光滑表面。与单脉冲烧蚀相比,脉冲串烧蚀产生了独特的表面结构,并对其形成机制进行了研究。揭示了表面熔化层的厚度以确定表面形态。基于透射电子显微镜(TEM)分析和数值模拟,发现100至320nm之间的熔化层厚度会产生光滑表面。这项工作突出了脉冲串模式烧蚀在不锈钢表面实现超光滑表面方面的优势,并揭示了超短脉冲激光脉冲串烧蚀中表面结构形成的基本机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/516a/11803565/b2a63e6e62a2/am4c19517_0001.jpg

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