上海交通大学学报(自然版) ›› 2014, Vol. 48 ›› Issue (1): 6-11.
收稿日期:
2013-12-28
基金资助:
国家重点基础研究发展规划(973)项目(2009CB724404)资助
Received:
2013-12-28
摘要:
中图分类号:
王宁,魏正英,林起崟,陈渭. 时变条件下滑动轴承系统的多物理场耦合分析[J]. 上海交通大学学报(自然版), 2014, 48(1): 6-11.
WANG Ning,WEI Zhengying,LIN Qiyin,CHEN Wei. Multi-Physical Field Coupling Analysis of Journal Bearing System under Time-Varying Condition[J]. Journal of Shanghai Jiaotong University, 2014, 48(1): 6-11.
[1]温诗铸, 黄平. 摩擦学原理[M]. 2版. 北京: 清华大学出版社, 2002. [2]Bouyer J, Fillon M. On the significance of thermal and deformation effects on a plain journal bearing subjected to severe operating conditions[J]. Journal of Tribology, 2004, 126(4): 819822. [3]Chen P, Hahn E. Use of computational fluid dynamics in hydrodynamic lubrication[J]. Journal of Engineering Tribology, 1998, 212(6): 427436. [4]Gertzos K, Nikolakopoulos P, Papadopoulos C. CFD analysis of journal bearing hydrodynamic lubrication by Bingham lubricant[J]. Tribology International, 2008, 41(12): 11901204. [5]Hartinger M, Dumont M L, Ioannides S, et al. CFD modeling of a thermal and shearthinning elastohydrodynamic line contact[J]. Journal of Tribology, 2008, 130(4): 116. [6]Guo Z, Hirano T, Kirk R G. Application of CFD analysis for rotating machinery[J]. Journal of Engineering for Gas Turbines and Power, 2005, 127(2): 445451. [7]Shenoy S B, Pai R, Rao D, et al. Elastohydrodynamic lubrication analysis of full 360′ journal bearing using CFD and FSI techniques[J]. World Journal of Modelling and Simulation, 2009, 5(4): 315320. [8]Liu H, Xu H, Ellison P J, et al. Application of computational fluid dynamics and fluidstructure interaction method to the lubrication study of a rotorbearing system[J]. Tribology Letters, 2010, 38(3): 325336. [9]Li Q, Liu S, Pan X, et al. A new method for studying the 3D transient flow of misaligned journal bearings in flexible rotorbearing systems[J]. Journal of Zhejiang UniversityScience A, 2012, 13(4): 293310. [10]Hong Y P, Chen D R, Kong X M, et al. Model of fluidstructure interaction and its applicationto elastohydrodynamic lubrication[J]. Computer Methods in Applied Mechanics and Engineering, 2002, 191(37): 42314240. [11]Meruane V, Pascual R. Identification of nonlinear dynamic coefficients in plain journal bearings[J]. Tribology International, 2008, 41(8): 743754. [12]张青雷, 卢修连, 朱均. 边界条件对滑动轴承性能的影响[J]. 润滑与密封, 2002(5):1213. ZHANG Qinglei, LU Xiulian, ZHU Jun. Boundary conditions effect on the performance of journal bearing[J]. Lubrication Engineering, 2002(5): 1213. [13]Sun D, Brewe D E. Two reference time scales for studying the dynamic cavitation of liquid films[J]. Journal of Tribology, 1992, 114(3): 612615. [14]Childs D, Hale K, Scharrer J. A test apparatus and facility to identify the rotordynamic coefficients of highspeed hydrostatic bearings[J]. Journal of Tribology, 1994, 116(2): 337344. [15]San Andres L, Childs D, Yang Z. Turbulentflow hydrostatic bearings: Analysis and experimental results[J]. International Journal of Mechanical Sciences, 1995, 37(8): 815829. [16]戴攀. 考虑紊流工况和温粘效应的高速精密主轴水润滑动静压轴承设计研究[D]. 西安:西安交通大学机械工程学院,2009. |
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