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A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy

Al–Mg–Sc–Zr alloy fabricated through selective laser melting (SLM) is an additive manufacturing alloy with promising industrial potential. In this study, as-printed specimens were subjected to either single-stage or two-stage heat treatment processes to investigate the effect of temperature from roo...

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Autores principales: Zhao, Jun-Ren, Lee, Liang-Yan, Chang, Kai-Chieh, Hung, Fei-Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228938/
https://www.ncbi.nlm.nih.gov/pubmed/35745415
http://dx.doi.org/10.3390/nano12122078
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author Zhao, Jun-Ren
Lee, Liang-Yan
Chang, Kai-Chieh
Hung, Fei-Yi
author_facet Zhao, Jun-Ren
Lee, Liang-Yan
Chang, Kai-Chieh
Hung, Fei-Yi
author_sort Zhao, Jun-Ren
collection PubMed
description Al–Mg–Sc–Zr alloy fabricated through selective laser melting (SLM) is an additive manufacturing alloy with promising industrial potential. In this study, as-printed specimens were subjected to either single-stage or two-stage heat treatment processes to investigate the effect of temperature from room temperature to high temperature on the specimens’ tensile and fatigue properties to establish a reliable reference for aerospace applications. The tensile test results indicated that the heat treatment contributed to determine the properties of the nanoprecipitate Al(3)(Sc, Zr) with a strengthening phase, improving tensile strength. Moreover, the dynamics strain aging (DSA) effect vanished as temperature increased. It is noteworthy that the nanoprecipitation was distributed at the boundary of the melting pool after single-stage heat treatment with the highest tensile properties in all tests. In addition, the microstructure observed after the two-stage heat treatment indicated a melting pool interface decomposition, and the nanoprecipitation was homogeneously scattered over the Al matrix, increasing strength and further delaying fatigue crack transmission. Those features build a high-fatigue-resistance foundation. TEM analysis also confirmed the promotion of Sc thermal diffusion and an Al(3)(Sc, Zr) precipitation transformation mechanism under two-stage heat treatment, corresponding to aforementioned inferences. The SLM Al–Mg–Sc–Zr alloy with two-stage heat treatment brings about balance between tensile properties and fatigue resistance, providing new insight into additive manufacturing with Al alloys.
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spelling pubmed-92289382022-06-25 A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy Zhao, Jun-Ren Lee, Liang-Yan Chang, Kai-Chieh Hung, Fei-Yi Nanomaterials (Basel) Article Al–Mg–Sc–Zr alloy fabricated through selective laser melting (SLM) is an additive manufacturing alloy with promising industrial potential. In this study, as-printed specimens were subjected to either single-stage or two-stage heat treatment processes to investigate the effect of temperature from room temperature to high temperature on the specimens’ tensile and fatigue properties to establish a reliable reference for aerospace applications. The tensile test results indicated that the heat treatment contributed to determine the properties of the nanoprecipitate Al(3)(Sc, Zr) with a strengthening phase, improving tensile strength. Moreover, the dynamics strain aging (DSA) effect vanished as temperature increased. It is noteworthy that the nanoprecipitation was distributed at the boundary of the melting pool after single-stage heat treatment with the highest tensile properties in all tests. In addition, the microstructure observed after the two-stage heat treatment indicated a melting pool interface decomposition, and the nanoprecipitation was homogeneously scattered over the Al matrix, increasing strength and further delaying fatigue crack transmission. Those features build a high-fatigue-resistance foundation. TEM analysis also confirmed the promotion of Sc thermal diffusion and an Al(3)(Sc, Zr) precipitation transformation mechanism under two-stage heat treatment, corresponding to aforementioned inferences. The SLM Al–Mg–Sc–Zr alloy with two-stage heat treatment brings about balance between tensile properties and fatigue resistance, providing new insight into additive manufacturing with Al alloys. MDPI 2022-06-16 /pmc/articles/PMC9228938/ /pubmed/35745415 http://dx.doi.org/10.3390/nano12122078 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhao, Jun-Ren
Lee, Liang-Yan
Chang, Kai-Chieh
Hung, Fei-Yi
A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title_full A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title_fullStr A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title_full_unstemmed A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title_short A Novel Two-Stage Heat Treatment with Medium-Temperature Aging Influence on Microstructure, Al(3)(Sc, Zr) Nanoprecipitation, and Application Properties, Enhancing Selective Laser Melting of Al–Mg–Sc–Zr Alloy
title_sort novel two-stage heat treatment with medium-temperature aging influence on microstructure, al(3)(sc, zr) nanoprecipitation, and application properties, enhancing selective laser melting of al–mg–sc–zr alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228938/
https://www.ncbi.nlm.nih.gov/pubmed/35745415
http://dx.doi.org/10.3390/nano12122078
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