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Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys

This study investigated the effects of a minor Zr addition (0.15 wt%) and heterogenization treatment (one-stage/two-stage) on the hot-working temperature and mechanical properties in Al-4.9Cu-1.2Mg-0.9Mn alloy. The results indicated that the eutectic phases (α-Al + θ-Al(2)Cu + S-Al(2)CuMg) dissolved...

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Autores principales: Wen, Ming-Che, Hsu, Yuan-Da, Chen, Mien-Chung, Yang, Wen-Chen, Lee, Sheng-Long
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301225/
https://www.ncbi.nlm.nih.gov/pubmed/37374443
http://dx.doi.org/10.3390/ma16124256
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author Wen, Ming-Che
Hsu, Yuan-Da
Chen, Mien-Chung
Yang, Wen-Chen
Lee, Sheng-Long
author_facet Wen, Ming-Che
Hsu, Yuan-Da
Chen, Mien-Chung
Yang, Wen-Chen
Lee, Sheng-Long
author_sort Wen, Ming-Che
collection PubMed
description This study investigated the effects of a minor Zr addition (0.15 wt%) and heterogenization treatment (one-stage/two-stage) on the hot-working temperature and mechanical properties in Al-4.9Cu-1.2Mg-0.9Mn alloy. The results indicated that the eutectic phases (α-Al + θ-Al(2)Cu + S-Al(2)CuMg) dissolved after heterogenization, retaining θ-Al(2)Cu and τ(1)-Al(29)Cu(4)Mn(6) phases, while the onset melting temperature increased to approximately 17 °C. A change in the onset melting temperature and evolution of the microstructure is used to assess an improvement in hot-working behavior. With the minor Zr addition, the alloy exhibited enhanced mechanical properties due to grain growth inhibition. Zr-added alloys show 490 ± 3 MPa ultimate tensile strength and 77.5 ± 0.7 HRB hardness after T4 tempering, compared to 460 ± 2.2 MPa and 73.7 ± 0.4 HRB for un-added alloys. Additionally, combining minor Zr addition and two-stage heterogenization resulted in finer Al(3)Zr dispersoids. Two-stage heterogenized alloys had an average Al(3)Zr size of 15 ± 5 nm, while one-stage heterogenized alloys had an average size of 25 ± 8 nm. A partial decrease in the mechanical properties of the Zr-free alloy was observed after two-stage heterogenization. The one-stage heterogenized alloy had 75.4 ± 0.4 HRB hardness after being T4-tempered, whereas the two-stage heterogenized alloy had 73.7 ± 0.4 HRB hardness after being T4-tempered.
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spelling pubmed-103012252023-06-29 Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys Wen, Ming-Che Hsu, Yuan-Da Chen, Mien-Chung Yang, Wen-Chen Lee, Sheng-Long Materials (Basel) Article This study investigated the effects of a minor Zr addition (0.15 wt%) and heterogenization treatment (one-stage/two-stage) on the hot-working temperature and mechanical properties in Al-4.9Cu-1.2Mg-0.9Mn alloy. The results indicated that the eutectic phases (α-Al + θ-Al(2)Cu + S-Al(2)CuMg) dissolved after heterogenization, retaining θ-Al(2)Cu and τ(1)-Al(29)Cu(4)Mn(6) phases, while the onset melting temperature increased to approximately 17 °C. A change in the onset melting temperature and evolution of the microstructure is used to assess an improvement in hot-working behavior. With the minor Zr addition, the alloy exhibited enhanced mechanical properties due to grain growth inhibition. Zr-added alloys show 490 ± 3 MPa ultimate tensile strength and 77.5 ± 0.7 HRB hardness after T4 tempering, compared to 460 ± 2.2 MPa and 73.7 ± 0.4 HRB for un-added alloys. Additionally, combining minor Zr addition and two-stage heterogenization resulted in finer Al(3)Zr dispersoids. Two-stage heterogenized alloys had an average Al(3)Zr size of 15 ± 5 nm, while one-stage heterogenized alloys had an average size of 25 ± 8 nm. A partial decrease in the mechanical properties of the Zr-free alloy was observed after two-stage heterogenization. The one-stage heterogenized alloy had 75.4 ± 0.4 HRB hardness after being T4-tempered, whereas the two-stage heterogenized alloy had 73.7 ± 0.4 HRB hardness after being T4-tempered. MDPI 2023-06-08 /pmc/articles/PMC10301225/ /pubmed/37374443 http://dx.doi.org/10.3390/ma16124256 Text en © 2023 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
Wen, Ming-Che
Hsu, Yuan-Da
Chen, Mien-Chung
Yang, Wen-Chen
Lee, Sheng-Long
Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title_full Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title_fullStr Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title_full_unstemmed Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title_short Effects of Heterogenization Treatment on the Hot-Working Temperature and Mechanical Properties of Al-Cu-Mg-Mn-(Zr) Alloys
title_sort effects of heterogenization treatment on the hot-working temperature and mechanical properties of al-cu-mg-mn-(zr) alloys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301225/
https://www.ncbi.nlm.nih.gov/pubmed/37374443
http://dx.doi.org/10.3390/ma16124256
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