Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure
The group of nickel based superalloys produced in the DMLS (Direct Metal Laser Sintering) process is limited to materials, which produced conventionally do not have properties to allow to use them for rotating components of aircraft engines. This work attempts to optimize the technological parameter...
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Publishing Agency - Welding Technology Review
2021-08-01
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doaj-7e3f01cc5fa54801bdd8ab2d93239ca92021-08-07T10:45:15ZengPublishing Agency - Welding Technology ReviewPrzegląd Spawalnictwa0033-23642449-79592021-08-0193310.26628/wtr.v93i3.1142Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structureJakub Ciftci0Ryszard Sitek1Jarosław Mizera2Warsaw University of TechnologyWarsaw University of TechnologyWarsaw University of TechnologyThe group of nickel based superalloys produced in the DMLS (Direct Metal Laser Sintering) process is limited to materials, which produced conventionally do not have properties to allow to use them for rotating components of aircraft engines. This work attempts to optimize the technological parameters of the DMLS process for the Inconel 713C nickel superalloy. A heat treatment was performed for selected samples to investigate the effect on the morphology of the Ni3Al phase. The microstructure analysis and hardness tests were carried out. The material after the DMLS process was characterized by the presence of much smaller dendrites than the cast material and exceeded its hardness. For the tested variants of heat treatment, the material was characterized by smaller sizes of the Ni3Al phase. In order to ensure the stability of the microstructure, an optimization of the dedicated heat treatment after the DMLS process is required, as the standard heat treatment for Inconel 713C cast nickel superalloy does not fully recrystallize the material. http://pspaw.pl/index.php/pspaw/article/view/1142laser remeltingInconel 713CDMLSEOS M100laser surface modification |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jakub Ciftci Ryszard Sitek Jarosław Mizera |
spellingShingle |
Jakub Ciftci Ryszard Sitek Jarosław Mizera Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure Przegląd Spawalnictwa laser remelting Inconel 713C DMLS EOS M100 laser surface modification |
author_facet |
Jakub Ciftci Ryszard Sitek Jarosław Mizera |
author_sort |
Jakub Ciftci |
title |
Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure |
title_short |
Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure |
title_full |
Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure |
title_fullStr |
Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure |
title_full_unstemmed |
Analysis of direct metal laser sintering ‒ DMLS and heat treatment influence on the Inconel 713C nickel alloy structure |
title_sort |
analysis of direct metal laser sintering ‒ dmls and heat treatment influence on the inconel 713c nickel alloy structure |
publisher |
Publishing Agency - Welding Technology Review |
series |
Przegląd Spawalnictwa |
issn |
0033-2364 2449-7959 |
publishDate |
2021-08-01 |
description |
The group of nickel based superalloys produced in the DMLS (Direct Metal Laser Sintering) process is limited to materials, which produced conventionally do not have properties to allow to use them for rotating components of aircraft engines. This work attempts to optimize the technological parameters of the DMLS process for the Inconel 713C nickel superalloy. A heat treatment was performed for selected samples to investigate the effect on the morphology of the Ni3Al phase. The microstructure analysis and hardness tests were carried out. The material after the DMLS process was characterized by the presence of much smaller dendrites than the cast material and exceeded its hardness. For the tested variants of heat treatment, the material was characterized by smaller sizes of the Ni3Al phase. In order to ensure the stability of the microstructure, an optimization of the dedicated heat treatment after the DMLS process is required, as the standard heat treatment for Inconel 713C cast nickel superalloy does not fully recrystallize the material.
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topic |
laser remelting Inconel 713C DMLS EOS M100 laser surface modification |
url |
http://pspaw.pl/index.php/pspaw/article/view/1142 |
work_keys_str_mv |
AT jakubciftci analysisofdirectmetallasersinteringdmlsandheattreatmentinfluenceontheinconel713cnickelalloystructure AT ryszardsitek analysisofdirectmetallasersinteringdmlsandheattreatmentinfluenceontheinconel713cnickelalloystructure AT jarosławmizera analysisofdirectmetallasersinteringdmlsandheattreatmentinfluenceontheinconel713cnickelalloystructure |
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