@article{Pan2026, 
author = {Tong Pan and Diandian Wu and Ke Ren and Xiaoying Li and Kan Ma and Hanshan Dong},
title = {Tribological performance of catalytic ceramic conversion treated Ti-15-3 β-Ti alloy under multi-lubrication conditions},
year = {2026},
journal = {Friction},
keywords = {metastable β-titanium alloy, integrating bulk treatment with surface functionalisation (IBTSF), tribological behaviour, lubrication},
url = {https://www.sciopen.com/article/10.26599/FRICT.2026.9441312},
doi = {10.26599/FRICT.2026.9441312},
abstract = {The tribological behaviour of Ti-15-3 β-titanium alloy treated by integrating bulk treatment with surface functionalisation (IBTSF) was systematically investigated under unlubricated, oil-lubricated, deionised water and simulated seawater conditions. Reciprocating sliding tests were performed against a WC ball under loads of 10 N or 20 N for 10,000 cycles. The results demonstrate that the tribological performance strongly depends on both the IBTSF treatments and the test environments. Under unlubricated conditions, the catalytic ceramic conversion treatments (C3TAu32 and C3TAg32) exhibited significantly lower friction and wear than the conventional ceramic conversion treatment (C2T32), owing to the self-lubricating effect of Au/Ag and the formation of thicker oxide layers. Hence, under the most severe unlubricated sliding condition (20 N), C3TAu32 reduced the wear factor by 99% compared with C2T32. In contrast, C2T32 showed superior wear resistance in oil, deionised water and simulated seawater because of its dense oxide layer and strong oxide/substrate bonding, while C3TAg32 suffered from corrosive wear in simulated seawater. Thus, C2T32 exhibited a wear factor 90% lower than C3TAg32 under simulated seawater. These findings establish application-oriented guidelines for selecting IBTSF treatments under different service environments, with C3TAu32 recommended for unlubricated applications and C2T32 for oil-lubricated and marine environments. The possible wear mechanisms are discussed to advance scientific understanding.}
}