Gu, X.-H.; Meng, Y.-Q.; Chang, H.; Bai, T.-X.; Ma, S.-G.; Zhang, Y.-Q.; Song, W.-D.; Li, Z.-Q.
Enhanced Strength and Plasticity of CoCrNiAl0.1Si0.1 Medium Entropy Alloy via Deformation Twinning and Microband at Cryogenic Temperature. Materials 2021, 14, 7574.
https://doi.org/10.3390/ma14247574
AMA Style
Gu X-H, Meng Y-Q, Chang H, Bai T-X, Ma S-G, Zhang Y-Q, Song W-D, Li Z-Q.
Enhanced Strength and Plasticity of CoCrNiAl0.1Si0.1 Medium Entropy Alloy via Deformation Twinning and Microband at Cryogenic Temperature. Materials. 2021; 14(24):7574.
https://doi.org/10.3390/ma14247574
Chicago/Turabian Style
Gu, Xiao-Hua, Yu-Quan Meng, Hui Chang, Tian-Xiang Bai, Sheng-Guo Ma, Yong-Qiang Zhang, Wei-Dong Song, and Zhi-Qiang Li.
2021. "Enhanced Strength and Plasticity of CoCrNiAl0.1Si0.1 Medium Entropy Alloy via Deformation Twinning and Microband at Cryogenic Temperature" Materials 14, no. 24: 7574.
https://doi.org/10.3390/ma14247574
APA Style
Gu, X.-H., Meng, Y.-Q., Chang, H., Bai, T.-X., Ma, S.-G., Zhang, Y.-Q., Song, W.-D., & Li, Z.-Q.
(2021). Enhanced Strength and Plasticity of CoCrNiAl0.1Si0.1 Medium Entropy Alloy via Deformation Twinning and Microband at Cryogenic Temperature. Materials, 14(24), 7574.
https://doi.org/10.3390/ma14247574