Design of ultrastrong but ductile medium-entropy alloy with controlled precipitations and heterogeneous grain structures
Research output: Journal Publications and Reviews (RGC: 21, 22, 62) › 21_Publication in refereed journal › peer-review
Author(s)
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Detail(s)
Original language | English |
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Article number | 101037 |
Journal / Publication | Applied Materials Today |
Volume | 23 |
Online published | 15 Apr 2021 |
Publication status | Published - Jun 2021 |
Link(s)
Abstract
In this study, we develop a non-equiatomic Co2CrNi1.5Al0.25Ti0.25 quinary medium-entropy alloy (MEA). The heterogeneous grain structure (HGS) (comprising residual deformed grains, micro-sized recrystallized grains and nano-sized recrystallized grains) and heterogeneous precipitation (HP) of the L12 phase corresponding to different kinds of grain structures are simultaneously introduced into the alloy by the well-designed thermomechanical processing. The alloy exhibits an ultra-high yield stress (σy) of 1.73 GPa, ultimate tensile stress (σu) of 1.89 GPa and remarkable total elongation (εte) up to 16.0% at σy 293 K, as well as ultra-high up to 2.02 GPa, up to 2.31 GPa and excellent εte up to 21.2% at 77 K. The synergy of multiple hardening mechanisms, mainly including back-stress hardening, precipitation hardening and pre-existed dislocation hardening contributes to the ultra-high at 293 K and 77 K. The HGS promotes the continuously increased geometrically necessary dislocations (GNDs) density, which, combined with the nano-spaced stacking fault (SF) networks, leads to the outstanding three-stage work-hardening behaviors during tensile tests at 293 K and 77 K. The simultaneous introduction of HGS and HP into this newly-developed MEA without brittle intermetallic phase, is a new effective method in designing high-performance alloys applied at both ambient and cryogenic temperatures.
Research Area(s)
- Strength, Ductility, Medium-entropy alloy, Heterogeneous grain structure, Heterogeneous precipitation
Citation Format(s)
Design of ultrastrong but ductile medium-entropy alloy with controlled precipitations and heterogeneous grain structures. / LI, Wanpeng; Chou, Tzu-Hsiu; Yang, Tao et al.
In: Applied Materials Today, Vol. 23, 101037, 06.2021.
In: Applied Materials Today, Vol. 23, 101037, 06.2021.
Research output: Journal Publications and Reviews (RGC: 21, 22, 62) › 21_Publication in refereed journal › peer-review