Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition

In this work, the manufacture of thin walls with sharp corners has been optimized by adjusting the limits of a 3-axis cartesian kinematics through data recorded and analyzed off-line, such as axis speed, acceleration and the positioning of the X and Y axes. The study was carried out with two powder...

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Main Authors: Juan Carlos Pereira, Herman Borovkov, Fidel Zubiri, Mari Carmen Guerra, Josu Caminos
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Journal of Manufacturing and Materials Processing
Subjects:
Online Access:https://www.mdpi.com/2504-4494/5/1/5
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spelling doaj-73b0175a815c4f11adde4f7807e7fdc22021-01-06T00:01:05ZengMDPI AGJournal of Manufacturing and Materials Processing2504-44942021-01-0155510.3390/jmmp5010005Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal DepositionJuan Carlos Pereira0Herman Borovkov1Fidel Zubiri2Mari Carmen Guerra3Josu Caminos4LORTEK Technological Centre, Basque Research and Technology Alliance (BRTA), Arranomendia kalea 4A, 20240 Ordizia, SpainLORTEK Technological Centre, Basque Research and Technology Alliance (BRTA), Arranomendia kalea 4A, 20240 Ordizia, SpainLORTEK Technological Centre, Basque Research and Technology Alliance (BRTA), Arranomendia kalea 4A, 20240 Ordizia, SpainAotek S. Coop., San Andrés 19, 20500 Arrasate-Mondragon, SpainFAGOR Automation S. Coop., San Andrés 19, 20500 Arrasate-Mondragon, SpainIn this work, the manufacture of thin walls with sharp corners has been optimized by adjusting the limits of a 3-axis cartesian kinematics through data recorded and analyzed off-line, such as axis speed, acceleration and the positioning of the X and Y axes. The study was carried out with two powder materials (SS316L and IN718) using the directed energy deposition process with laser. Thin walls were obtained with 1 mm thickness and only one bead per layer and straight/sharp corners at 90°. After adjusting the in-position parameter G502 for positioning precision on the FAGOR 8070 CNC system, it has been possible to obtain walls with minimal accumulation of material in the corner, and with practically constant layer thickness and height, with a radii of internal curvature between 0.11 and 0.24 mm for two different precision configuration. The best results have been obtained by identifying the correct balance between the decrease in programmed speed and the precision in the positioning to reach the point defined as wall corner, with speed reductions of 29% for a programmed speed of 20 mm/s and 61% for a speed of 40 mm/s. The walls show minimal defects such as residual porosities, and the microstructure is adequate.https://www.mdpi.com/2504-4494/5/1/5additive manufacturinglaser metal depositionthin wallssharp cornercartesian kinematicFAGOR 8070 CNC
collection DOAJ
language English
format Article
sources DOAJ
author Juan Carlos Pereira
Herman Borovkov
Fidel Zubiri
Mari Carmen Guerra
Josu Caminos
spellingShingle Juan Carlos Pereira
Herman Borovkov
Fidel Zubiri
Mari Carmen Guerra
Josu Caminos
Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
Journal of Manufacturing and Materials Processing
additive manufacturing
laser metal deposition
thin walls
sharp corner
cartesian kinematic
FAGOR 8070 CNC
author_facet Juan Carlos Pereira
Herman Borovkov
Fidel Zubiri
Mari Carmen Guerra
Josu Caminos
author_sort Juan Carlos Pereira
title Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
title_short Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
title_full Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
title_fullStr Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
title_full_unstemmed Optimization of Thin Walls with Sharp Corners in SS316L and IN718 Alloys Manufactured with Laser Metal Deposition
title_sort optimization of thin walls with sharp corners in ss316l and in718 alloys manufactured with laser metal deposition
publisher MDPI AG
series Journal of Manufacturing and Materials Processing
issn 2504-4494
publishDate 2021-01-01
description In this work, the manufacture of thin walls with sharp corners has been optimized by adjusting the limits of a 3-axis cartesian kinematics through data recorded and analyzed off-line, such as axis speed, acceleration and the positioning of the X and Y axes. The study was carried out with two powder materials (SS316L and IN718) using the directed energy deposition process with laser. Thin walls were obtained with 1 mm thickness and only one bead per layer and straight/sharp corners at 90°. After adjusting the in-position parameter G502 for positioning precision on the FAGOR 8070 CNC system, it has been possible to obtain walls with minimal accumulation of material in the corner, and with practically constant layer thickness and height, with a radii of internal curvature between 0.11 and 0.24 mm for two different precision configuration. The best results have been obtained by identifying the correct balance between the decrease in programmed speed and the precision in the positioning to reach the point defined as wall corner, with speed reductions of 29% for a programmed speed of 20 mm/s and 61% for a speed of 40 mm/s. The walls show minimal defects such as residual porosities, and the microstructure is adequate.
topic additive manufacturing
laser metal deposition
thin walls
sharp corner
cartesian kinematic
FAGOR 8070 CNC
url https://www.mdpi.com/2504-4494/5/1/5
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