Citation: | YANG Yu-mou, FENG Ming. Influence of undissolved gas on the characteristics of high-speed water-lubricated bearings[J]. Chinese Journal of Engineering, 2017, 39(11): 1709-1717. doi: 10.13374/j.issn2095-9389.2017.11.014 |
[2] |
Nakano S, Kishibe T, Inoue T, et al. An advanced microturbine system with water-lubricated bearings. Int J Rotating Mach, 2009(1):1
|
[3] |
Yoshimoto S, Kume T, Shitara T. Axial load capacity of water-lubricated hydrostatic conical bearings with spiral grooves for high speed spindles:comparison between rigid and complaint surface bearings. Tribology Int, 1998, 31(6):331
|
[4] |
Yoshimoto S, Oshima S, Danbara S, et al. Stability of water-lubricated, hydrostatic, conical bearings with spiral grooves for highspeed spindles. J Tribology, 2002, 124(2):398
|
[7] |
Braun M J, Hannon W M. Cavitation formation and modelling for fluid film bearings:a review. Proceedings Inst Mech Eng Part J:J Eng Tribology, 2010, 224(9):839
|
[11] |
Hatakenaka K, Tanaka M, Suzuki K. A theoretical analysis of floating bush journal bearing with axial oil film rupture being considered. J Tribology, 2002, 124(3):494
|
[13] |
Meng F M, Zhang L, Long T. Effect of groove textures on performances for gaseous bubble in lubricant of journal bearing. J Tribology, 2017, 139(5):031701-1
|
[14] |
Gertzos K P, Nikolakopoulos P G, Papadopoulos C A. CFD analysis of journal bearing hydrodynamic lubrication by Bingham lubricant. Tribology Int, 2008, 41(12):1190
|
[15] |
Yong H, Balendra R. CFD analysis on the lubrication behaviours of journal bearing with dimples//Proceeding of IEEE 2009 International Conference on Mechatronics and Automation. Changchun, 2009:1279
|
[18] |
Singhal A K, Athavale M M, Li H Y, et al. Mathematical basis and validation of the full cavitation model. J Fluids Eng, 2002, 124(3):617
|