Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (4): 455-464.DOI: 10.1007/s40195-020-01114-z
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Hui Xiao1,2,3, Yu Liu4, Kai Wang2, Zhipeng Wang1,3(), Te Hu1, Touwen Fan1(
), Li Ma5, Pingying Tang5
Received:
2020-03-22
Revised:
2020-05-16
Accepted:
2020-06-11
Online:
2021-04-10
Published:
2021-03-30
Contact:
Zhipeng Wang,Touwen Fan
About author:
Touwen Fan, fantouwen_1980@163.comHui Xiao, Yu Liu, Kai Wang, Zhipeng Wang, Te Hu, Touwen Fan, Li Ma, Pingying Tang. Effects of Mn Content on Mechanical Properties of FeCoCrNiMnx (0≤x≤0.3) High-Entropy Alloys: A First-Principles Study[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 455-464.
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a0 (Å) | This work | Theoretical results | Experimental results |
---|---|---|---|
FeCoCrNi | 3.568 | 3.529 [ | 3.575 [ |
FeCoCrNiMn | 3.578 | 3.528 [ | 3.597 [ |
3.529 [ |
Table 1 Comparisons of equilibrium lattice constant a0 with other theoretical and experimental results for FeCoCrNi and FeCoCrNiMn HEAs with FCC crystal structures
a0 (Å) | This work | Theoretical results | Experimental results |
---|---|---|---|
FeCoCrNi | 3.568 | 3.529 [ | 3.575 [ |
FeCoCrNiMn | 3.578 | 3.528 [ | 3.597 [ |
3.529 [ |
HEAs | This work | Theoretical results | Experiments |
---|---|---|---|
FeCoCrNi | |||
C11 | 268.9 | 271.0 [ | |
C12 | 187.9 | 175.0 [ | |
C44 | 174.2 | 189.0 [ | |
B | 215.0 | 207.0 [ | 162.9 [ |
G | 97.9 | 110.0 [ | 84.0 [ |
E | 255.0 | 280.0 [ | 215.0 [ |
FeCoCrNiMn | |||
C11 | 252.1 | 250.0 [ | 195.9 [ |
C12 | 175.2 | 156.0 [ | 117.7 [ |
C44 | 169.9 | 180.0 [ | 129.3 [ |
B | 200.8 | 188.0 [ | 143.8 [ |
G | 94.5 | 106.0 [ | 80.2 [ |
E | 245.1 | 267.0 [ | 202.2 [ |
Table 2 Comparisons of current results with available theoretical and experimental results for FeCoCrNi and FeCoCrNiMn HEAs with FCC crystal structures (unit: GPa)
HEAs | This work | Theoretical results | Experiments |
---|---|---|---|
FeCoCrNi | |||
C11 | 268.9 | 271.0 [ | |
C12 | 187.9 | 175.0 [ | |
C44 | 174.2 | 189.0 [ | |
B | 215.0 | 207.0 [ | 162.9 [ |
G | 97.9 | 110.0 [ | 84.0 [ |
E | 255.0 | 280.0 [ | 215.0 [ |
FeCoCrNiMn | |||
C11 | 252.1 | 250.0 [ | 195.9 [ |
C12 | 175.2 | 156.0 [ | 117.7 [ |
C44 | 169.9 | 180.0 [ | 129.3 [ |
B | 200.8 | 188.0 [ | 143.8 [ |
G | 94.5 | 106.0 [ | 80.2 [ |
E | 245.1 | 267.0 [ | 202.2 [ |
Fig. 5 Variation curves of Zener ratio $A_{{\text{Z}}}$ and anisotropy factor $A_{{\left( {110} \right)\left[ {001} \right]}}$ versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
Fig. 6 Variation curves of Poisson's ratios $\sigma_{{\left[ {001} \right]}}$ and $\sigma_{{\left[ {111} \right]}}$ versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
Fig. 8 Variation curves of Vickers hardness $H_{{\text{V}}}$ a and yield strength $\sigma_{{\text{y}}}$ b versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
Fig. 10 Variation curves of energy factor $K_{{{\text{mixed}}}}$ of mixed dislocation a and dislocation width $\zeta$ b versus direction angle $\theta$ ($0 \le \theta \le \pi$) between Burgers vector and dislocation line
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