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108. Applicability of a recently proposed tribocorrosion model to CoCr alloys
with different carbides content. / S Guadalupe, et al. Wear. 2017. Vol. 376-377.
P. 203–211.
109. Corrosion and tribocorrosion behavior of Ti−TiB−TiN x in-situ hybrid
composite synthesized by reactive hot pressing. / J. I. Silva, et al. Journal of the
Mechanical Behavior of Biomedical Materials. 2017. Vol. 74. P. 195–203.
110. Bailey, R., Sun, Y. Corrosion and Tribocorrosion Performance of Pack-
Carburized Commercially Pure Titanium with Limited Oxygen Diffusion in a
0.9% NaCl Solution. Journal of Bio- and Tribo-Corrosion. 2017. № 4. P. 1-12.
111. Mraied, H., Cai, W. The effects of Mn concentration on the tribocorrosion
resistance of Al–Mn alloys. Wear. 2017. Vol. 380-381. P. 191–202.
112. Tribocorrosion and Electrochemical Behavior of DIN 1.4110 Martensitic
Stainless Steels After Cryogenic Heat Treatment. / L. B. Ramos, et al. Materials
Research. 2017. Vol. 20. № 2. P. 460–468.
113. Tribocorrosion Behaviors of D40 Steel in Artificial Seawater. / L. Shi, et al.
Materials Science Forum. 2017.Vol. 898. P. 840–848.
114. Bautista-Ruiz J., Caicedo J., Aperador W. Tribocorrosion Behavior of
Amorphous CarbonSilicon Coated Titanium in Biological Medium. Tribology in
Industry. 2018. №2. P. 326–334.
115. Structural, mechanical and tribocorrosion behaviour in artificial seawater of
CrN/AlN nano-multilayer coatings on F690 steel substrates. / F. Ma, et al.
Applied Surface Science. 2018. Vol. 428. P. 404–414.
116. The effect of nanocrystallized surface on the tribocorrosion behavior of
304L stainless steel. / F. B. Saada, et al. Wear. 2018. Vol. 394-395. P. 71–79.
117. López-Ortega A., Arana J. L., Bayón R. Tribocorrosion of Passive
Materials: A Review on Test Procedures and Standards. International Journal of
Corrosion. 2018. P. 1–24.