Ghamari, A.; Almasi, B.; Kim, C.-h.; Jeong, S.-H.; Hong, K.-J.
An Innovative Steel Damper with a Flexural and Shear–Flexural Mechanism to Enhance the CBF System Behavior: An Experimental and Numerical Study. Appl. Sci. 2021, 11, 11454.
https://doi.org/10.3390/app112311454
AMA Style
Ghamari A, Almasi B, Kim C-h, Jeong S-H, Hong K-J.
An Innovative Steel Damper with a Flexural and Shear–Flexural Mechanism to Enhance the CBF System Behavior: An Experimental and Numerical Study. Applied Sciences. 2021; 11(23):11454.
https://doi.org/10.3390/app112311454
Chicago/Turabian Style
Ghamari, Ali, Behroz Almasi, Chang-hyuk Kim, Seong-Hoon Jeong, and Kee-Jeung Hong.
2021. "An Innovative Steel Damper with a Flexural and Shear–Flexural Mechanism to Enhance the CBF System Behavior: An Experimental and Numerical Study" Applied Sciences 11, no. 23: 11454.
https://doi.org/10.3390/app112311454
APA Style
Ghamari, A., Almasi, B., Kim, C.-h., Jeong, S.-H., & Hong, K.-J.
(2021). An Innovative Steel Damper with a Flexural and Shear–Flexural Mechanism to Enhance the CBF System Behavior: An Experimental and Numerical Study. Applied Sciences, 11(23), 11454.
https://doi.org/10.3390/app112311454