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Effect of stacking fault energy (SFE) of single crystal, equiatomic CrCoNi and Cantor alloy on creep resistance

Title data

Gadelmeier, Christian ; Agudo Jácome, L. ; Suárez Ocaño, P. ; Glatzel, Uwe:
Effect of stacking fault energy (SFE) of single crystal, equiatomic CrCoNi and Cantor alloy on creep resistance.
In: Materials Science & Engineering: A. Vol. 908 (2024) . - 146779.
ISSN 0921-5093
DOI: https://doi.org/10.1016/j.msea.2024.146779

Official URL: Volltext

Project information

Project title:
Project's official title
Project's id
No information
GL 181/56
Compositionally Complex Alloys - High Entropy Alloys
SPP 2006

Project financing: Deutsche Forschungsgemeinschaft

Abstract in another language

Compared to mechanisms like solid solution strengthening, the stacking fault energy (SFE) should be considered as a further factor that influences the material properties. The effect of SFE of alloys or individual elements on strength and resistance can vary considerably. In the high-temperature regime above 700 °C, there are still significant gaps in the knowledge about the effect of the SFE on the mechanical properties of single-phase alloys. The effect of SFE on creep resistance of two face-entered cubic equiatomic medium and high entropy alloys, CrCoNi and CrMnFeCoNi, respectively, is evaluated to fill parts of these gaps. Using the Bridgman solidification process, the alloys were produced as single crystals and crept under vacuum at 700 °C up to 1100 °C. This work shows a significant impact of the lower SFE of CrCoNi on the creep behavior compared to the results of previous investigations of CrMnFeCoNi. The creep resistance of the former is higher over the complete temperature range. At very high temperatures, the strengthening effect of the stacking faults is significantly present. The formation of tetragonal stacking faults and extended dislocation nodes can be identified as the reason for this effect.

Further data

Item Type: Article in a journal
Refereed: Yes
Keywords: Medium entropy alloy; MEA; HEA; Single crystal; CrCoNi; Creep; Stacking fault energy
Institutions of the University: Faculties > Faculty of Engineering Science > Chair Metals and Alloys > Chair Metals and Alloys - Univ.-Prof. Dr.-Ing. Uwe Glatzel
Faculties
Faculties > Faculty of Engineering Science
Faculties > Faculty of Engineering Science > Chair Metals and Alloys
Result of work at the UBT: Yes
DDC Subjects: 600 Technology, medicine, applied sciences > 620 Engineering
Date Deposited: 22 Feb 2025 22:02
Last Modified: 24 Feb 2025 06:40
URI: https://eref.uni-bayreuth.de/id/eprint/92529