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Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions

Most medium entropy alloys (MEAs) exhibit excellent mechanical properties, but their applications are limited because of their high density. This study explores a series of lightweight nonequiatomic Ti(65)(AlCrNbV)(35-x)Zr(x) (x = 3, 5, 7, and 10) MEAs with a low density, high strength, and high duc...

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Autores principales: Chen, Po-Sung, Shiu, Sheng-Jia, Tsai, Pei-Hua, Liao, Yu-Chin, Jang, Jason Shian-Ching, Wu, Hsin-Jay, Chang, Shou-Yi, Chen, Chih-Yen, Tsao, I-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506522/
https://www.ncbi.nlm.nih.gov/pubmed/36143635
http://dx.doi.org/10.3390/ma15186324
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author Chen, Po-Sung
Shiu, Sheng-Jia
Tsai, Pei-Hua
Liao, Yu-Chin
Jang, Jason Shian-Ching
Wu, Hsin-Jay
Chang, Shou-Yi
Chen, Chih-Yen
Tsao, I-Yu
author_facet Chen, Po-Sung
Shiu, Sheng-Jia
Tsai, Pei-Hua
Liao, Yu-Chin
Jang, Jason Shian-Ching
Wu, Hsin-Jay
Chang, Shou-Yi
Chen, Chih-Yen
Tsao, I-Yu
author_sort Chen, Po-Sung
collection PubMed
description Most medium entropy alloys (MEAs) exhibit excellent mechanical properties, but their applications are limited because of their high density. This study explores a series of lightweight nonequiatomic Ti(65)(AlCrNbV)(35-x)Zr(x) (x = 3, 5, 7, and 10) MEAs with a low density, high strength, and high ductility. To achieve solid solution strengthening, Zr with a large atomic radius was used. In addition, various thermomechanical treatment parameters were adopted to further improve the MEAs’ mechanical properties. The density of the MEAs was revealed to be approximately 5 g/cm(3), indicating that they were lightweight. Through an X-ray diffraction analysis, the MEAs were revealed to have a single body-centered cubic structure not only in the as-cast state but also after thermomechanical treatment. In terms of mechanical properties, all the as-cast MEAs with Zr additions achieved excellent performance (>1000 MPa tensile yield strength and 20% tensile ductility). In addition, hot rolling effectively eliminated the defects of the MEAs; under a given yield strength, hot-rolled MEAs exhibited superior ductility relative to non-hot-rolled MEAs. Overall, the Ti(65)(AlCrNbV)(28)Zr(7) MEAs exhibited an optimum combination of mechanical properties (yield strength > 1200 MPa, plastic strain > 15%) after undergoing hot rolling 50%, cold rolling 70%, and rapid annealing for 30 to 50 s (at a temperature of approximately 850 °C) with a heating rate of 15 K/s. With their extremely high specific yield strength (264 MPa·g/cm(3)) and high ductility (22%), the Ti(65)(AlCrNbV)(28)Zr(7) MEAs demonstrate considerable potential for energy and transportation applications.
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spelling pubmed-95065222022-09-24 Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions Chen, Po-Sung Shiu, Sheng-Jia Tsai, Pei-Hua Liao, Yu-Chin Jang, Jason Shian-Ching Wu, Hsin-Jay Chang, Shou-Yi Chen, Chih-Yen Tsao, I-Yu Materials (Basel) Communication Most medium entropy alloys (MEAs) exhibit excellent mechanical properties, but their applications are limited because of their high density. This study explores a series of lightweight nonequiatomic Ti(65)(AlCrNbV)(35-x)Zr(x) (x = 3, 5, 7, and 10) MEAs with a low density, high strength, and high ductility. To achieve solid solution strengthening, Zr with a large atomic radius was used. In addition, various thermomechanical treatment parameters were adopted to further improve the MEAs’ mechanical properties. The density of the MEAs was revealed to be approximately 5 g/cm(3), indicating that they were lightweight. Through an X-ray diffraction analysis, the MEAs were revealed to have a single body-centered cubic structure not only in the as-cast state but also after thermomechanical treatment. In terms of mechanical properties, all the as-cast MEAs with Zr additions achieved excellent performance (>1000 MPa tensile yield strength and 20% tensile ductility). In addition, hot rolling effectively eliminated the defects of the MEAs; under a given yield strength, hot-rolled MEAs exhibited superior ductility relative to non-hot-rolled MEAs. Overall, the Ti(65)(AlCrNbV)(28)Zr(7) MEAs exhibited an optimum combination of mechanical properties (yield strength > 1200 MPa, plastic strain > 15%) after undergoing hot rolling 50%, cold rolling 70%, and rapid annealing for 30 to 50 s (at a temperature of approximately 850 °C) with a heating rate of 15 K/s. With their extremely high specific yield strength (264 MPa·g/cm(3)) and high ductility (22%), the Ti(65)(AlCrNbV)(28)Zr(7) MEAs demonstrate considerable potential for energy and transportation applications. MDPI 2022-09-12 /pmc/articles/PMC9506522/ /pubmed/36143635 http://dx.doi.org/10.3390/ma15186324 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 Communication
Chen, Po-Sung
Shiu, Sheng-Jia
Tsai, Pei-Hua
Liao, Yu-Chin
Jang, Jason Shian-Ching
Wu, Hsin-Jay
Chang, Shou-Yi
Chen, Chih-Yen
Tsao, I-Yu
Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title_full Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title_fullStr Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title_full_unstemmed Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title_short Remarkable Enhanced Mechanical Properties of TiAlCrNbV Medium-Entropy Alloy with Zr Additions
title_sort remarkable enhanced mechanical properties of tialcrnbv medium-entropy alloy with zr additions
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506522/
https://www.ncbi.nlm.nih.gov/pubmed/36143635
http://dx.doi.org/10.3390/ma15186324
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