A. U. Rehman Et Al. , "Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation," Nanomaterials , vol.11, no.12, 2021
Rehman, A. U. Et Al. 2021. Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation. Nanomaterials , vol.11, no.12 .
Rehman, A. U., Mahmood, M. A., Pitir, F., SALAMCI, M. U., Popescu, A. C., & Mihailescu, I. N., (2021). Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation. Nanomaterials , vol.11, no.12.
Rehman, Asif Et Al. "Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation," Nanomaterials , vol.11, no.12, 2021
Rehman, Asif U. Et Al. "Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation." Nanomaterials , vol.11, no.12, 2021
Rehman, A. U. Et Al. (2021) . "Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation." Nanomaterials , vol.11, no.12.
@article{article, author={Asif Ur Rehman Et Al. }, title={Keyhole formation by laser drilling in laser powder bed fusion of Ti6Al4V biomedical alloy: Mesoscopic computational fluid dynamics simulation versus mathematical modelling using empirical validation}, journal={Nanomaterials}, year=2021}