M. ÇAKIR Et Al. , "Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks," Journal of Coatings Technology and Research , vol.21, no.4, pp.1343-1360, 2024
ÇAKIR, M. Et Al. 2024. Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks. Journal of Coatings Technology and Research , vol.21, no.4 , 1343-1360.
ÇAKIR, M., AKIN, E., Günsay, K., & ARTIR, R., (2024). Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks. Journal of Coatings Technology and Research , vol.21, no.4, 1343-1360.
ÇAKIR, MUSTAFA Et Al. "Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks," Journal of Coatings Technology and Research , vol.21, no.4, 1343-1360, 2024
ÇAKIR, MUSTAFA Et Al. "Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks." Journal of Coatings Technology and Research , vol.21, no.4, pp.1343-1360, 2024
ÇAKIR, M. Et Al. (2024) . "Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks." Journal of Coatings Technology and Research , vol.21, no.4, pp.1343-1360.
@article{article, author={MUSTAFA ÇAKIR Et Al. }, title={Wear, thermal, corrosion, and physical properties of novel UV-cured nanocomposite hybrid coatings with fluorine-containing silica networks}, journal={Journal of Coatings Technology and Research}, year=2024, pages={1343-1360} }