Jin, X.; Wang, R.-Z.; Shu, Y.; Fei, J.-W.; Wen, J.-F.; Tu, S.-T.
Creep-Fatigue Crack Initiation Simulation of a Modified 12% Cr Steel Based on Grain Boundary Cavitation and Plastic Slip Accumulation. Materials 2021, 14, 6565.
https://doi.org/10.3390/ma14216565
AMA Style
Jin X, Wang R-Z, Shu Y, Fei J-W, Wen J-F, Tu S-T.
Creep-Fatigue Crack Initiation Simulation of a Modified 12% Cr Steel Based on Grain Boundary Cavitation and Plastic Slip Accumulation. Materials. 2021; 14(21):6565.
https://doi.org/10.3390/ma14216565
Chicago/Turabian Style
Jin, Xin, Run-Zi Wang, Yang Shu, Jia-Wen Fei, Jian-Feng Wen, and Shan-Tung Tu.
2021. "Creep-Fatigue Crack Initiation Simulation of a Modified 12% Cr Steel Based on Grain Boundary Cavitation and Plastic Slip Accumulation" Materials 14, no. 21: 6565.
https://doi.org/10.3390/ma14216565
APA Style
Jin, X., Wang, R. -Z., Shu, Y., Fei, J. -W., Wen, J. -F., & Tu, S. -T.
(2021). Creep-Fatigue Crack Initiation Simulation of a Modified 12% Cr Steel Based on Grain Boundary Cavitation and Plastic Slip Accumulation. Materials, 14(21), 6565.
https://doi.org/10.3390/ma14216565