Determination of curved surface slider behavior under different loading conditions
2025
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Advisor: Prof. Dr. Gökhan Özdemir
Abstract (EN)
This study systematically investigates the variations in friction coefficient of both full-scale double-curved surface sliders and small-scale slider material under different loading conditions. First, wear tests were performed, and the corresponding friction coefficients obtained from full- and small-scale tests were compared. Second, full- and small-scale test results were used to assess the variations in static and dynamic friction coefficients under cyclic motions performed at both room- and low-temperature conditions. In the experimental program, not only the temperature and exposure time but also the normal stress level and the loading velocity were selected as parameters. Finally, a unified model was proposed to estimate the friction coefficient of full-scale isolator by means of small-scale test results. The key findings are as follows: (i) After 1000 m wearing tests, it seen that the hysteretic behavior of full-scale isolator remains unchanged. (ii) In low-temperature tests, due to formation of an ice layer at the sliding interface, which behaves like a lubricant, friction coefficients of both the isolator and the slider reduces substantially compared to ones obtained from room-temperature tests. (iii) Friction coefficients obtained from full- and small-scale tests (either wear or cyclic motion tests) results are very close to each other at room-temperature but not at low-temperature cases. (iv) The proposed formulation, which is calibrated based on small-scale test results, is accurate enough to estimate friction coefficients of full-scale isolator at room-temperature for a wide range of loading combinations.
Author
Dr. Esengül Çavdar
Institution
How to Cite
Esengül Çavdar (Doctorate thesis). Determination of curved surface slider behavior under different loading conditions, 2025, Eskişehir Teknik Üniversitesi.
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