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Microstructural Evolution and Mechanical Behavior of Co-Free (Fe40Ni30Cr20Al10)100-xTix High-Entropy Alloys.

Authors :
Junchen Liu
Zhenfei Jiang
Weiping Chen
Haolun Fan
Zhiqiang Fu
Source :
Advanced Engineering Materials; 11/15/2023, Vol. 25 Issue 22, p1-11, 11p
Publication Year :
2023

Abstract

In this work, microstructural evolution and mechanical behavior of Co-free (Fe<subscript>40</subscript>Ni<subscript>30</subscript>Cr<subscript>20</subscript>Al<subscript>10</subscript>)<subscript>100-x</subscript>Ti<subscript>x</subscript> (x = 0, 2, 4, 6, and 8 at%) high-entropy alloys (HEAs) are investigated. All as-cast HEAs consist of face-centered-cubic (FCC)- and bodycentered-cubic (BCC)-structured phases, wherein the BCC-structured phase is composed of disordered BCC (A2) and ordered BCC (B2) phases. The HEAs show FCC dendrite and BCC inter-dendrite microstructure when x = 4. As the Ti content increases to 6 and 8 at%, the microstructure evolves from dendrite structures to complex lamellar structures, leading to a significant loss in ductility. With the increase of Ti, the strength is enhanced with the sacrifice of ductility. The (Fe<subscript>40</subscript>Ni<subscript>30</subscript>Cr<subscript>20</subscript>Al<subscript>10</subscript>)<subscript>96</subscript>Ti<subscript>4</subscript> alloy exhibits promising combinations of strength and ductility, displaying a yield strength of 680 MPa, an ultimate tensile strength of 1132 MPa, and a total elongation of 16.6%. The simple FCC þ BCC dendrite microstructure and optimal content of the BCC-structured region containing A2 þ B2 phases are responsible for the excellent tensile properties of the as-cast (Fe<subscript>40</subscript>Ni<subscript>30</subscript>Cr<subscript>20</subscript>Al<subscript>10</subscript>)<subscript>96</subscript>Ti<subscript>4</subscript> HEA. In this work, it is suggested that good combinations of strength and ductility of low-cost Co-free FeNiCrAl-based HEAs can be achieved by tailoring Ti addition. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14381656
Volume :
25
Issue :
22
Database :
Complementary Index
Journal :
Advanced Engineering Materials
Publication Type :
Academic Journal
Accession number :
174452982
Full Text :
https://doi.org/10.1002/adem.202300946