Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition

In this study, a manufacturing strategy, and guidelines for inclined and multilayered structures of variable thickness are presented, which are based on the results of an own-developed geometrical model that obtains both the coating thickness and dilution. This model is developed for the powder-fed...

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Main Authors: Pedro Ramiro, Mikel Ortiz, Amaia Alberdi, Aitzol Lamikiz
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/10/10/1280
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spelling doaj-57c2737a779f48bab8c51f2c6af204b52020-11-25T03:27:44ZengMDPI AGMetals2075-47012020-09-01101280128010.3390/met10101280Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy DepositionPedro Ramiro0Mikel Ortiz1Amaia Alberdi2Aitzol Lamikiz3TECNALIA, Basque Research and Technology Alliance (BRTA), Paseo Mikeletegi 7, 20009 Donostia-San Sebastián, SpainTECNALIA, Basque Research and Technology Alliance (BRTA), Paseo Mikeletegi 7, 20009 Donostia-San Sebastián, SpainTECNALIA, Basque Research and Technology Alliance (BRTA), Paseo Mikeletegi 7, 20009 Donostia-San Sebastián, SpainDepartment of Mechanical Engineering, Faculty of Engineering of Bilbao, University of Basque Country, Alameda de Urquijo s/n, 48013 Bilbao, SpainIn this study, a manufacturing strategy, and guidelines for inclined and multilayered structures of variable thickness are presented, which are based on the results of an own-developed geometrical model that obtains both the coating thickness and dilution. This model is developed for the powder-fed directed energy deposition process (DED) and it only uses the DED single-track cladding characteristics (height, width, area, and dilution depth), the overlap percentage, and the laser head tilting-angle as inputs. As outputs, it calculates both the cladding geometry and the dilution area of the coating. This model for the Ni-based alloy 718 was improved, based on previous studies of the single clad working both vertically and at an inclined angle, adding the equations of the single clad characteristics with respect to the main process parameters. The strategy proposed in this paper for multilayered cladding consisted of both adding an extra clad at the edges of the layer and using a variable value of the overlap percentage between clads for geometric adaptations. With this strategy, the material deposition is more accurate than otherwise, and it shows stable growth. Manufacturing a multilayered wall of wider thicknesses at higher heights was utilized to validate the strategy.https://www.mdpi.com/2075-4701/10/10/1280directed energy depositionpowdercoatingsmultilayer structurevariable thicknessgeometrical model
collection DOAJ
language English
format Article
sources DOAJ
author Pedro Ramiro
Mikel Ortiz
Amaia Alberdi
Aitzol Lamikiz
spellingShingle Pedro Ramiro
Mikel Ortiz
Amaia Alberdi
Aitzol Lamikiz
Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
Metals
directed energy deposition
powder
coatings
multilayer structure
variable thickness
geometrical model
author_facet Pedro Ramiro
Mikel Ortiz
Amaia Alberdi
Aitzol Lamikiz
author_sort Pedro Ramiro
title Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
title_short Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
title_full Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
title_fullStr Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
title_full_unstemmed Strategy Development for the Manufacturing of Multilayered Structures of Variable Thickness of Ni-Based Alloy 718 by Powder-Fed Directed Energy Deposition
title_sort strategy development for the manufacturing of multilayered structures of variable thickness of ni-based alloy 718 by powder-fed directed energy deposition
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2020-09-01
description In this study, a manufacturing strategy, and guidelines for inclined and multilayered structures of variable thickness are presented, which are based on the results of an own-developed geometrical model that obtains both the coating thickness and dilution. This model is developed for the powder-fed directed energy deposition process (DED) and it only uses the DED single-track cladding characteristics (height, width, area, and dilution depth), the overlap percentage, and the laser head tilting-angle as inputs. As outputs, it calculates both the cladding geometry and the dilution area of the coating. This model for the Ni-based alloy 718 was improved, based on previous studies of the single clad working both vertically and at an inclined angle, adding the equations of the single clad characteristics with respect to the main process parameters. The strategy proposed in this paper for multilayered cladding consisted of both adding an extra clad at the edges of the layer and using a variable value of the overlap percentage between clads for geometric adaptations. With this strategy, the material deposition is more accurate than otherwise, and it shows stable growth. Manufacturing a multilayered wall of wider thicknesses at higher heights was utilized to validate the strategy.
topic directed energy deposition
powder
coatings
multilayer structure
variable thickness
geometrical model
url https://www.mdpi.com/2075-4701/10/10/1280
work_keys_str_mv AT pedroramiro strategydevelopmentforthemanufacturingofmultilayeredstructuresofvariablethicknessofnibasedalloy718bypowderfeddirectedenergydeposition
AT mikelortiz strategydevelopmentforthemanufacturingofmultilayeredstructuresofvariablethicknessofnibasedalloy718bypowderfeddirectedenergydeposition
AT amaiaalberdi strategydevelopmentforthemanufacturingofmultilayeredstructuresofvariablethicknessofnibasedalloy718bypowderfeddirectedenergydeposition
AT aitzollamikiz strategydevelopmentforthemanufacturingofmultilayeredstructuresofvariablethicknessofnibasedalloy718bypowderfeddirectedenergydeposition
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