Non-Diffractive Bessel Beams for Ultrafast Laser Scanning Platform and Proof-Of-Concept Side-Wall Polishing of Additively Manufactured Parts

被引:26
作者
Nguyen, Huu Dat [1 ]
Sedao, Xxx [1 ,2 ]
Mauclair, Cyril [1 ,2 ]
Bidron, Guillaume [2 ]
Faure, Nicolas [1 ]
Moreno, Enrique [1 ]
Colombier, Jean-Philippe [1 ]
Stoian, Razvan [1 ]
机构
[1] Univ Jean Monnet, Univ Lyon, CNRS, Lab Hubert Curien,Inst Opt,Grad Sch,UMR 5516, F-42000 St Etienne, France
[2] GIE Manutech USD, F-42000 St Etienne, France
关键词
Bessel beam; non-diffractive; self-healing; ultrafast laser; surface processing; additive manufacturing; selective laser melting; laser powder bed fusion; scanner; FEMTOSECOND; MICROSTRUCTURE; ABLATION; TITANIUM; DENSITY; PULSES;
D O I
10.3390/mi11110974
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
We report the potential use of non-diffractive Bessel beam for ultrafast laser processing in additive manufacturing environments, its integration into a fast scanning platform, and proof-of-concept side-wall polishing of stainless steel-based additively fabricated parts. We demonstrate two key advantages of the zeroth-order Bessel beam: the significantly long non-diffractive length for large tolerance of sample positioning and the unique self-reconstruction property for un-disrupted beam access, despite the obstruction of metallic powders in the additive manufacturing environment. The integration of Bessel beam scanning platform is constructed by finely adapting the Bessel beam into a Galvano scanner. The beam sustained its good profile within the scan field of 35 x 35 mm(2). As a proof of concept, the platform showcases its advanced capacity by largely reducing the side-wall surface roughness of an additively as-fabricated workpiece from Ra 10 mu m down to 1 mu m. Therefore, the demonstrated Bessel-Scanner configuration possesses great potential for integrating in a hybrid additive manufacturing apparatus.
引用
收藏
页数:14
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