Abstract
This paper deals with the development of an original apparatus called TRIBOLUMEN designed specifically for friction experiments on transparent materials. The friction measurement is synchronized with an acoustic emission (AE) sensor and the device is also equipped with a high-speed camera offering a direct view at the interface to gain a deeper understanding of tribological mechanisms. The TRIBOLUMEN device is in ball-on-flat contact configuration with a range of strokes from 5 to 500 m and an oscillation frequency from 5 to 600 Hz. The experiments showed that this device has an adequate rigidity and can detect subtle friction modifications of the oscillating contacts. The observation of a steel-on-glass contact in real-time highlighted the initiation of Hertzian cracks followed by the formation of debris in the contact. Using the synchronous measurement, these mechanisms were clearly associated with different stages in the friction measurement and in the AE signals, which permitted to identify the AE signature of Hertzian cracks.
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CITATION STYLE
Jlaiel, K., Yahiaoui, M., Paris, J. Y., & Denape, J. (2020). Tribolumen: A tribometer for a correlation between ae signals and observation of tribological process in real-time-application to a dry steel/glass reciprocating sliding contact. Lubricants, 8(4). https://doi.org/10.3390/LUBRICANTS8040047
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