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Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V

The contour scan strategies in laser powder bed fusion (LPBF) of Ti-6Al-4V were studied at the coupon level. These scan strategies determined the surface qualities and subsurface residual stresses. The correlations to these properties were identified for an optimization of the LPBF processing. The s...

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Autores principales: Artzt, Katia, Mishurova, Tatiana, Bauer, Peter-Philipp, Gussone, Joachim, Barriobero-Vila, Pere, Evsevleev, Sergei, Bruno, Giovanni, Requena, Guillermo, Haubrich, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7436019/
https://www.ncbi.nlm.nih.gov/pubmed/32731434
http://dx.doi.org/10.3390/ma13153348
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author Artzt, Katia
Mishurova, Tatiana
Bauer, Peter-Philipp
Gussone, Joachim
Barriobero-Vila, Pere
Evsevleev, Sergei
Bruno, Giovanni
Requena, Guillermo
Haubrich, Jan
author_facet Artzt, Katia
Mishurova, Tatiana
Bauer, Peter-Philipp
Gussone, Joachim
Barriobero-Vila, Pere
Evsevleev, Sergei
Bruno, Giovanni
Requena, Guillermo
Haubrich, Jan
author_sort Artzt, Katia
collection PubMed
description The contour scan strategies in laser powder bed fusion (LPBF) of Ti-6Al-4V were studied at the coupon level. These scan strategies determined the surface qualities and subsurface residual stresses. The correlations to these properties were identified for an optimization of the LPBF processing. The surface roughness and the residual stresses in build direction were linked: combining high laser power and high scan velocities with at least two contour lines substantially reduced the surface roughness, expressed by the arithmetic mean height, from values as high as 30 µm to 13 µm, while the residual stresses rose from ~340 to about 800 MPa. At this stress level, manufactured rocket fuel injector components evidenced macroscopic cracking. A scan strategy completing the contour region at 100 W and 1050 mm/s is recommended as a compromise between residual stresses (625 MPa) and surface quality (14.2 µm). The LPBF builds were monitored with an in-line twin-photodiode-based melt pool monitoring (MPM) system, which revealed a correlation between the intensity quotient I(2)/I(1), the surface roughness, and the residual stresses. Thus, this MPM system can provide a predictive estimate of the surface quality of the samples and resulting residual stresses in the material generated during LPBF.
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spelling pubmed-74360192020-08-24 Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V Artzt, Katia Mishurova, Tatiana Bauer, Peter-Philipp Gussone, Joachim Barriobero-Vila, Pere Evsevleev, Sergei Bruno, Giovanni Requena, Guillermo Haubrich, Jan Materials (Basel) Article The contour scan strategies in laser powder bed fusion (LPBF) of Ti-6Al-4V were studied at the coupon level. These scan strategies determined the surface qualities and subsurface residual stresses. The correlations to these properties were identified for an optimization of the LPBF processing. The surface roughness and the residual stresses in build direction were linked: combining high laser power and high scan velocities with at least two contour lines substantially reduced the surface roughness, expressed by the arithmetic mean height, from values as high as 30 µm to 13 µm, while the residual stresses rose from ~340 to about 800 MPa. At this stress level, manufactured rocket fuel injector components evidenced macroscopic cracking. A scan strategy completing the contour region at 100 W and 1050 mm/s is recommended as a compromise between residual stresses (625 MPa) and surface quality (14.2 µm). The LPBF builds were monitored with an in-line twin-photodiode-based melt pool monitoring (MPM) system, which revealed a correlation between the intensity quotient I(2)/I(1), the surface roughness, and the residual stresses. Thus, this MPM system can provide a predictive estimate of the surface quality of the samples and resulting residual stresses in the material generated during LPBF. MDPI 2020-07-28 /pmc/articles/PMC7436019/ /pubmed/32731434 http://dx.doi.org/10.3390/ma13153348 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Artzt, Katia
Mishurova, Tatiana
Bauer, Peter-Philipp
Gussone, Joachim
Barriobero-Vila, Pere
Evsevleev, Sergei
Bruno, Giovanni
Requena, Guillermo
Haubrich, Jan
Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title_full Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title_fullStr Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title_full_unstemmed Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title_short Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V
title_sort pandora’s box–influence of contour parameters on roughness and subsurface residual stresses in laser powder bed fusion of ti-6al-4v
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7436019/
https://www.ncbi.nlm.nih.gov/pubmed/32731434
http://dx.doi.org/10.3390/ma13153348
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