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Published on: September 28, 2015
Tribological Properties Study of Solid Lubrication with TiO2 Powder Particles
Filip Ilie1, George Ipate2, Florentina Cristina Manaila2
1Department of Machine Elements and Tribology, Politehnica University of Bucharest, 060042 Bucharest, Romania.
Titanium dioxide (TiO 2 ) acts as an effective oil-free solid lubricant, demonstrating self-repairing and self-replenishing properties in tribological studies. This research validates its use in reducing friction and wear.
Area of Science:
- Materials Science
- Tribology
- Solid Lubrication
Background:
- Titanium dioxide (TiO 2 ) exhibits solid lubricant properties, similar to tungsten disulfide (WS 2 ) and molybdenum disulfide (MoS 2 ), reducing friction and wear.
- Compacted TiO 2 powder forms pellets, which have been investigated for their tribological behavior in various contact configurations.
- The concept of a 'third body' in lubrication, referring to intermediate materials like transferred particles, is crucial for understanding lubrication mechanisms.
Purpose of the Study:
- To investigate the tribological behavior and lubrication characteristics of titanium dioxide (TiO 2 ) as a solid lubricant, particularly in an oil-free context.
- To evaluate the self-repairing and self-replenishing capabilities of TiO 2 -based solid lubricant coatings.
- To develop and validate a theoretical model (Control Volume Fractional Coverage - CVFC) for predicting the performance of TiO 2 in sliding contacts.
Main Methods:
- Tribological experiments were conducted using a tribometer with simultaneous pellet/disk and slider pad/disk contacts.
- TiO 2 powder was compacted into pellets, and its lubrication characteristics were studied by intentionally transferring particles onto a disk surface.
- A theoretical Control Volume Fractional Coverage (CVFC) model was employed to estimate wear rates and friction coefficients based on material properties, operational parameters, and fractional coverage.
Main Results:
- Titanium dioxide (TiO 2 ) pellets demonstrated effective oil-free lubrication, exhibiting self-repairing and self-replenishing behavior.
- The CVFC model successfully estimated pellet wear rates and slider pad friction coefficients, correlating well with experimental data.
- Fractional coverage, a parameter in the CVFC model, proved useful in quantifying the amount of third-body material on the disk asperities.
Conclusions:
- Titanium dioxide (TiO 2 ) is a viable and effective oil-free solid lubricant with self-sustaining lubrication properties.
- The developed CVFC model accurately describes the tribological behavior of sliding contacts involving TiO 2 , both qualitatively and quantitatively.
- Experimental and theoretical results align, confirming the model's predictive capability for TiO 2 -based lubrication systems.
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