Metastability in high entropy alloys
The high entropy effect is often insufficient to fully stabilize single-phase solid solutions (SPSS), yielding only few, mostly metastable SPSS. While the prospective space of favorable SPSS formation is smaller than commonly assumed, larger degrees of metastability can open up the vast High Entropy...
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Published in | Scripta materialia Vol. 186; no. C; pp. 392 - 400 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Ltd
01.09.2020
Elsevier |
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Abstract | The high entropy effect is often insufficient to fully stabilize single-phase solid solutions (SPSS), yielding only few, mostly metastable SPSS. While the prospective space of favorable SPSS formation is smaller than commonly assumed, larger degrees of metastability can open up the vast High Entropy Alloy space. We argue that HEAs form metastable SPSS through polymorphic solidification upon rapid cooling. To quantify a HEA's metastability, we propose the critical cooling rate of SPSS formation RCSPSS, analogous to RCGlass. Thereby, we can compare multicomponent alloys by their metastability and SPSS or glass forming ability, which is determined by their underlying atomic dispersity. |
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AbstractList | Not provided. The high entropy effect is often insufficient to fully stabilize single-phase solid solutions (SPSS), yielding only few, mostly metastable SPSS. While the prospective space of favorable SPSS formation is smaller than commonly assumed, larger degrees of metastability can open up the vast High Entropy Alloy space. We argue that HEAs form metastable SPSS through polymorphic solidification upon rapid cooling. To quantify a HEA's metastability, we propose the critical cooling rate of SPSS formation RCSPSS, analogous to RCGlass. Thereby, we can compare multicomponent alloys by their metastability and SPSS or glass forming ability, which is determined by their underlying atomic dispersity. |
Author | Kube, Sebastian A. Schroers, Jan |
Author_xml | – sequence: 1 givenname: Sebastian A. surname: Kube fullname: Kube, Sebastian A. – sequence: 2 givenname: Jan surname: Schroers fullname: Schroers, Jan email: jan.schroers@yale.edu |
BackLink | https://www.osti.gov/biblio/1801611$$D View this record in Osti.gov |
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Keywords | Metallic Glasses Time-Temperature-Transformation Diagrams High Entropy Alloys Critical Cooling Rate Metastability |
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Snippet | The high entropy effect is often insufficient to fully stabilize single-phase solid solutions (SPSS), yielding only few, mostly metastable SPSS. While the... Not provided. |
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SubjectTerms | Critical Cooling Rate High Entropy Alloys Materials Science Metallic Glasses Metallurgy & Metallurgical Engineering Metastability Science & Technology - Other Topics Time-Temperature-Transformation Diagrams |
Title | Metastability in high entropy alloys |
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