A. Heidarzadeh Et Al. , "Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms," ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2, 2020
Heidarzadeh, A. Et Al. 2020. Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms. ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2 .
Heidarzadeh, A., Paidar, M., Guleryuz, G., & Barenji, R. V., (2020). Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms. ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2.
Heidarzadeh, A. Et Al. "Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms," ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2, 2020
Heidarzadeh, A. Et Al. "Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms." ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2, 2020
Heidarzadeh, A. Et Al. (2020) . "Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms." ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING , vol.20, no.2.
@article{article, author={A. Heidarzadeh Et Al. }, title={Application of nanoindentation to evaluate the hardness and yield strength of brass joints produced by FSW: microstructural and strengthening mechanisms}, journal={ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING}, year=2020}