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COMPOSITION AND SURFACE STATE INFLUENCE IN LASER PROCESS FOR STEEL SHEETS

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SEPTEMBER 2020   -  Volume: 95 -  Pages: 497-502

DOI:

https://doi.org/10.6036/9677

Authors:

JOANA RAMOS - JORDI FIGUERAS - SONIA MORALEJO -
AITZOL LAMIKIZ MENTXAKA

Disciplines:

  • Industrial technology (PROCESOS INDUSTRIALES )

Downloads:   261

How to cite this paper:  
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Received Date :   17 February 2020

Reviewing Date :   18 February 2020

Accepted Date :   9 March 2020


Key words:
corte por láser, láser de fibra, composición, estado superficial, acabado superficial, parámetros de corte, calidad lateral, laser cutting, fiber laser, steel, composition, surface state, surface finish, cutting parameters, edge quality
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

Laser cutting process is highly influenced by material composition and surface state before cutting. Variability in these elements involve changes in cutting parameter values (productivity) and cut quality (part acceptance or rejection).
The vast majority of studies on this matter have been conducted employing CO2 lasers, therefore, the aim of this analysis is to complete existing literature and update it with actual industrial trends which move towards the use of fibre lasers.
For this purpose, behaviour of three steel types with thicknesses of 6mm, 10mm and 15mm has been analysed, using the sheets just as they left the mill, with a superficial machining and superficial rust. Quality of obtained parts has been measured visually and through a confocal microscope, comparing roughness results with the standard UNE-EN ISO 9013 for thermal cuts.
Results have revealed three different existing quality zones (upper, centre, bottom) for thick materials. Differences in quality and cutting parameter values between pickled steel and Hardox have been noticed, but not between pickled steel and Ruukki. Moreover, significant variations in cutting process have been observed when previous superficial rust is present, while machined surface has no effect on it.

Keywords: laser cutting, fiber laser, steel, composition, surface state, surface finish, cutting parameters, edge quality

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