M. Pouraminian Et Al. , "Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study," Scientific Reports , vol.14, no.1, 2024
Pouraminian, M. Et Al. 2024. Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study. Scientific Reports , vol.14, no.1 .
Pouraminian, M., Akbari Baghal, A. E., Andalibi, K., KHOSRAVI, F., & Arab Maleki, V., (2024). Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study. Scientific Reports , vol.14, no.1.
Pouraminian, Majid Et Al. "Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study," Scientific Reports , vol.14, no.1, 2024
Pouraminian, Majid Et Al. "Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study." Scientific Reports , vol.14, no.1, 2024
Pouraminian, M. Et Al. (2024) . "Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study." Scientific Reports , vol.14, no.1.
@article{article, author={Majid Pouraminian Et Al. }, title={Enhancing the pull-out behavior of ribbed steel bars in CNT-modified UHPFRC using recycled steel fibers from waste tires: a multiscale finite element study}, journal={Scientific Reports}, year=2024}