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A Modern Approach to HEAs: From Structure to Properties and Potential Applications
by
Ionita, Daniela
, Demetrescu, Ioana
, Nartita, Radu
in
advanced materials
/ Alloys
/ Crystal structure
/ Crystallography
/ Deformation
/ Ductility
/ Entropy
/ Formulations
/ HEA applications
/ HEA crystallographic structures
/ HEA properties
/ High entropy alloys
/ Innovations
/ Intermetallic compounds
/ Materials science
/ Mechanical properties
/ multi-element alloys
/ Nuclear energy
/ Physical properties
2024
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A Modern Approach to HEAs: From Structure to Properties and Potential Applications
by
Ionita, Daniela
, Demetrescu, Ioana
, Nartita, Radu
in
advanced materials
/ Alloys
/ Crystal structure
/ Crystallography
/ Deformation
/ Ductility
/ Entropy
/ Formulations
/ HEA applications
/ HEA crystallographic structures
/ HEA properties
/ High entropy alloys
/ Innovations
/ Intermetallic compounds
/ Materials science
/ Mechanical properties
/ multi-element alloys
/ Nuclear energy
/ Physical properties
2024
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Do you wish to request the book?
A Modern Approach to HEAs: From Structure to Properties and Potential Applications
by
Ionita, Daniela
, Demetrescu, Ioana
, Nartita, Radu
in
advanced materials
/ Alloys
/ Crystal structure
/ Crystallography
/ Deformation
/ Ductility
/ Entropy
/ Formulations
/ HEA applications
/ HEA crystallographic structures
/ HEA properties
/ High entropy alloys
/ Innovations
/ Intermetallic compounds
/ Materials science
/ Mechanical properties
/ multi-element alloys
/ Nuclear energy
/ Physical properties
2024
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A Modern Approach to HEAs: From Structure to Properties and Potential Applications
Journal Article
A Modern Approach to HEAs: From Structure to Properties and Potential Applications
2024
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Overview
High-entropy alloys (HEAs) are advanced materials characterized by their unique and complex compositions. Characterized by a mixture of five or more elements in roughly equal atomic ratios, these alloys diverge from traditional alloy formulations that typically focus on one or two principal elements. This innovation has paved the way for subsequent studies that have expanded our understanding of HEAs, highlighting the role of high mixing entropy in stabilizing fewer phases than expected by traditional phase prediction methods like Gibbs’s rule. In this review article, we trace the evolution of HEAs, discussing their synthesis, stability, and the influence of crystallographic structures on their properties. Additionally, we highlight the strength–ductility trade-off in HEAs and explore strategies to overcome this challenge. Moreover, we examine the diverse applications of HEAs in extreme conditions and their promise for future advancements in materials science.
Publisher
MDPI AG
Subject
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