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Conductive Al Alloys: The Contradiction between Strength and Electrical Conductivity
Author(s) -
Wang Yu,
Zhu Langjie,
Niu Guodong,
Mao Jian
Publication year - 2021
Publication title -
advanced engineering materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.938
H-Index - 114
eISSN - 1527-2648
pISSN - 1438-1656
DOI - 10.1002/adem.202001249
Subject(s) - materials science , ultimate tensile strength , electrical conductor , mechanical strength , conductor , microstructure , conductivity , engineering physics , composite material , engineering , physics , quantum mechanics
In recent years, the severe energy consumption identified in the global power‐transmission process makes the development of new generation of transmission materials with high strength (mainly the ultimate tensile strength) and outstanding electrical conductivity (EC) more urgent. Though Al and its alloys received significant attention from the scientific community in the past two decades due to their relatively high mechanical properties and excellent EC, increasing strength and EC are often incompatible in Al conductor alloys, which remains unresolved. Therefore, the ways to achieve the optimal compromise between the strength and EC has become a hot topic in current researches. This review focuses on the high‐strength conductive Al alloys that have been studied by researchers in the past two decades, and endeavors to reveal the relationship between the EC and the strength based on composition, microstructure, interface, and others. Moreover, the design ideas and treatment measures considering both conductivity and strength are also summarized.