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Title: Simultaneous enhancement of strength and ductility via microband formation and nanotwinning in an L1₂-strengthened alloy
Authors: Yang, L
Liang, D
Cheng, Z
Duan, R
Zhong, C
Luan, J
Jiao, Z 
Ren, F
Issue Date: Jan-2024
Source: Fundamental research, Jan. 2024, v. 4, no. 1, p. 147-157
Abstract: Metallic alloys with high strength and large ductility are required for extreme structural applications. However, the achievement of ultrahigh strength often results in a substantially decreased ductility. Here, we report a strategy to achieve the strength-ductility synergy by tailoring the alloy composition to control the local stacking fault energy (SFE) of the face-centered-cubic (fcc) matrix in an L12-strengthened superlattice alloy. As a proof of concept, based on the thermodynamic calculations, we developed a non-equiatomic CoCrNi2(Al0.2Nb0.2) alloy using phase separation to create a near-equiatomic low SFE disordered CoCrNi medium-entropy alloy matrix with in situ formed high-content coherent Ni3(Al, Nb)-type ordered nanoprecipitates (∼ 12 nm). The alloy achieves a high tensile strength up to 1.6 GPa and a uniform ductility of 33%. The low SFE of the fcc matrix promotes the formation of nanotwins and parallel microbands during plastic deformation which could remarkably enhance the strain hardening capacity. This work provides a strategy for developing ultrahigh-strength alloys with large uniform ductility.
Keywords: L12-strengthened superlattice alloy
Microbands
Nanotwins
Stacking fault energy
Strain hardening
Publisher: National Natural Science Foundation of China
Journal: Fundamental research 
ISSN: 2096-9457
EISSN: 2667-3258
DOI: 10.1016/j.fmre.2022.05.024
Rights: © 2022 The Authors. Publishing Services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)
The following publication Yang, L., Liang, D., Cheng, Z., Duan, R., Zhong, C., Luan, J., Jiao, Z., & Ren, F. (2024). Simultaneous enhancement of strength and ductility via microband formation and nanotwinning in an L12-strengthened alloy. Fundamental Research, 4(1), 147-157 is available at https://doi.org/10.1016/j.fmre.2022.05.024.
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