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  1. RePhyChem
  2. Research Outputs
  3. Journal Article
Please use this identifier to cite or link to this item: https://dspace.ffh.bg.ac.rs/handle/123456789/2241
Title: Microstructure Formations Resulting from Nanosecond and Picosecond Laser Irradiation of a Ti-Based Alloy under Controlled Atmospheric Conditions and Optimization of the Irradiation Process
Authors: Dubravka Milovanović
Boris Rajčić
Ranković, Dragan 
Biljana Stankov
Miha Čekada
Jovan Ciganović
Dragica Đurđević-Milošević
Zoran Stević
Kuzmanović, Miroslav 
Tatjana Šibalija
Sanja Petronić
Keywords: Ti6Al4V; picosecond laser; nanosecond laser; surface modification; argon-rich atmosphere; nitrogen-rich atmosphere; laser-induced periodic surface structures; laser-induced breakdown spectroscopy; Taguchi’s robust parameter design
Issue Date: 19-Dec-2023
Project: 451-03-47/2023-01/200024
451-03-47/2023-01/200146
RS-200017
Abstract: 
This paper presents a study and comparison of surface effects induced by picosecond and nanosecond laser modification of a Ti6Al4V alloy surface under different ambient conditions: air and argon- and nitrogen-rich atmospheres. Detailed surface characterization was performed for all experimental conditions. Damage threshold fluences for picosecond and nanosecond laser irradiation in all three ambient conditions were determined. The observed surface features were a resolidified pool of molten material, craters, hydrodynamic effects and parallel periodic surface structures. Laser-induced periodic surface structures are formed by multi-mode-beam nanosecond laser action and picosecond laser action. Crown-like structures at crater rims are specific features for picosecond Nd:YAG laser action in argon-rich ambient conditions. Elemental analysis of the surfaces indicated nitride compound formation only in the nitrogen-rich ambient conditions. The constituents of the formed plasma were also investigated. Exploring the impact of process control parameters on output responses has been undertaken within the context of laser modification under different environmental conditions. Parametric optimization of the nanosecond laser modification was carried out by implementing an advanced method based on Taguchi’s parametric design and multivariate statistical techniques, and optimal settings are proposed for each atmosphere.
URI: https://dspace.ffh.bg.ac.rs/handle/123456789/2241
DOI: 10.3390/mi15010005
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University of Belgrade
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PAC 105305
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University of Belgrade Faculty of Physical Chemistry