Experimental studying the effect of water temperature on friction properties of marine propeller sliding bearing
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#tribology #friction coefficient #marine sliding bearing #polymer materialTài liệu tham khảo
Y. Bai and W.-L. Jin. Marine structural design. Elsevier, (2016).
J. Carlton. Marine propellers and propulsion. Butterworth-Heinemann, (2018).
L. Roldo, I. Komar, and N. Vuli´c. Design and materials selection for environmentally friendly ship propulsion system. Strojniˇski vestnik – Journal of Mechanical Engineering, 59, (2013), pp. 25–31.
W. Litwin. Marine propeller shaft bearings under low-speed conditions: water vs. oil lubrication. Tribology Transactions, 62, (2019), pp. 839–849.
R. L. Orndorff. Water lubricated rubber bearings, history and new developments. Naval Engineers Journal, 97, (1985), pp. 39–52.
W. Litwin. Water-lubricated bearings of ship propeller shafts - problems, experimental tests and theoretical investigations. Polish Maritime Research, 16, (2009).
W. Litwin. Influence of main design parameters of ship propeller shaft waterlubricated bearings on their properties. Polish Maritime Research, 17, (2010), pp. 39–45.
G. Vizentin, G. Vukelic, L. Murawski, N. Recho, and J. Orovic. Marine propulsion system failures—A review. Journal of Marine Science and Engineering, 8, (2020).
B. Primorac and J. Parunov. Review of statistical data on ship accidents. In Maritime Technology and Engineering III, CRC Press, (2016), pp. 809–814,
A. Ford. New composite seal and bearing technology for better performance. Wartsila Tech J, 1, (2012), pp. 34–39.
Y.-Q. Wang, X.-J. Shi, and L.-J. Zhang. Experimental and numerical study on waterlubricated rubber bearings. Industrial Lubrication and Tribology, 66, (2014), pp. 282–288.
G. Gao, Z. Yin, D. Jiang, and X. Zhang. Numerical analysis of plain journal bearing under hydrodynamic lubrication by water. Tribology International, 75, (2014), pp. 31–38.
G. Cui, Q. Bi, S. Zhu, J. Yang, and W. Liu. Tribological properties of bronze–graphite composites under sea water condition. Tribology International, 53, (2012), pp. 76–86.
R. F. King and D. Tabor. The effect of temperature on the mechanical properties and the friction of plastics. Proceedings of the Physical Society. Section B, 66, (9), (1953).
A. Jean-Fulcrand, M. A. Masen, T. Bremner, and J. S. S. Wong. Effect of temperature on tribological performance of polyetheretherketone-polybenzimidazole blend. Tribology International, 129, (2019), pp. 5–15.
F. Zheng, M. Lv, Q.Wang, and T.Wang. Effect of temperature on friction and wear behaviors of polyimide (PI)-based solid–liquid lubricating materials. Polymers for Advanced Technologies, 26, (8), (2015), pp. 988–993.
W. Litwin and C. Dymarski. Experimental research on water-lubricated marine stern tube bearings in conditions of improper lubrication and cooling causing rapid bush wear. Tribology International, 95, (2016), pp. 449–455.
