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      Analysis of Laser Cutting Process for Different Diagonal Material Shapes

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      Processes
      MDPI AG

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          Abstract

          In this study, the laser cutting characteristics were analyzed according to the shape of the back side of the specimen, and the laser cutting characteristics were compared according to the thickness of the edge (10 mm, 20 mm, and 30 mm). A Yb-YAG laser was used in this study, and the cutting target was STS304 with a thickness of 50 mm, and the cutting process was analyzed using a high-speed camera. In the experiment, it was found through image analysis that the cutting performance was excellent at 30 mm thickness of the edge. In order to analyze this reason, a thermal conduction analysis (numerical simulation) was performed, and it was confirmed that the thicker thickness of the edge caused a preheating effect during laser cutting due to a large amount of heat accumulation. This effect can be used as a reference for the initial processing state while cutting thick metals as it is a characteristic that has not been revealed before.

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          Most cited references25

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          Experimental study on the CO2 laser cutting of carbon fiber reinforced plastic composite

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            Experimental and Parametric Evaluation of Cut Quality Characteristics in CO2 Laser Cutting of Polystyrene

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              Laser Cutting: A Review on the Influence of Assist Gas

              Assist gas plays a central role in laser fusion cutting. In this work, the aerodynamic interactions between the assist gas and the workpiece are reviewed. An insight into those phenomena that hinder the cutting quality and performance is provided. These phenomena include shock waves, choking, boundary layer separation, etc. The most relevant and promising attempts to overcome these common problems related to the gas dynamics are surveyed. The review of the current scientific literature has revealed some gaps in the current knowledge of the role of the assist gas dynamics in laser cutting. The assist gas interactions have been investigated only under static conditions; and the dynamic interaction with the molten material on the cutting front has not been addressed. New nozzle designs with improved efficiency of molten material removal are required to improve cut quality; and cutting speed in current industrial laser cutting machines; especially in those assisted by new high-brightness laser sources.
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                Author and article information

                Contributors
                Journal
                PROCCO
                Processes
                Processes
                MDPI AG
                2227-9717
                December 2022
                December 19 2022
                : 10
                : 12
                : 2743
                Article
                10.3390/pr10122743
                07a66b3a-7468-45ef-8b97-f6816bb5e3cf
                © 2022

                https://creativecommons.org/licenses/by/4.0/

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