Muyuan Zhou, Tao Zhang, L. Li, Jingru Yan, Haibo Xie, Lisong Zhu, H. Liu, Fang Wang, Zhao Xing, Sihai Jiao, Zhengyi Jiang
Excessive friction and wear during sliding remain critical challenges in mechanical systems, and the formation of the tribo-oxide layer during this process significantly influence surface quality. This study firstly investigates triethanolamine borate (TEA-B) as an eco-friendly chemical additive in TiO 2 /hBN hybrid water-based nanolubricants to further improve tribological performance. Tribotests with ball-on-disc configuration were conducted under dry, water, and nanolubricant conditions containing TEA-B concentrations from 0 to 5 wt%. The coefficient of friction (COF), wear rate, and wear scar were systematically evaluated, also the morphologies and compositions of tribo-oxide layer analysed by SEM, XPS, and Raman spectroscopy. The optimum condition shows that the utilisation of 5 wt% TEA-B significantly reduced the COF to 0.088 and decreased the wear rate by 87.47% compared with dry condition. XPS and Raman analyses confirmed that TEA-B effectively suppressed the oxidation of Fe 2+ to Fe 3+ , thereby stabilising the tribo-oxide layer with higher fractions of ductile Fe 3 O 4 and FeO rather than brittle Fe 2 O 3 . This chemically modified tribo-oxide layer, combined with the rolling and mending effects of TiO 2 /hBN nanoadditives, facilitated the formation of a stable and protective tribofilm. These findings provide new insights into the synergistic lubrication mechanisms of nanolubricants, and highlight the potential of TEA-B-enhanced formulations as environmentally friendly additive for advanced tribological applications.