[1] 夏新沛. 箔片气体轴承流场及平箔变形对轴承性能影响的分析[D]. 北京:中国科学院研究生院 (工程热物理研究所), 2011.
[2] Agrawal G L. Foil Air/Gas Bearing Technology-an Overview[R]. ASME 97-GT-347.
[3] Heshmat H, Walowit J A, Pinkus O. Analysis of Gas-lubricated Foil Journal Bearings[J]. Journal of Tribology, 1983, 105(4): 647-655.
[4] Ku C P R, Heshmat H. Compliant Foil Bearing Structural Stiffness Analysis: Part I—Theoretical Model Including Strip and Variable Bump Foil Geometry[J]. Journal of Tribology, 1992, 114(2): 394-400.
[5] Ku C P R, Heshmat H. Compliant Foil Bearing Structural Stiffness Analysis—Part II: Experimental Investigation[J]. Journal of Tribology, 1993, 115(3): 364-369.
[6] 虞烈, 戚社苗, 耿海鹏. 可压缩气体润滑与弹性箔片气体轴承技术[M]. 北京:科学出版社, 2011.
[7] Burgdorfer. The Influence of the Molecular Mean Free Path on the Performance of Hydrodynamic Gas Lubribricated Bearings[R]. AECU-3771; I-A2049-2, 1958.
[8] Wu L, Bogy D B. New First and Second Order Slip Models for the Compressible Reynolds Equation[J]. Journal of Tribology, 2003, 125(3): 558-561.
[9] Mitsuya Y. Modified Reynolds Equation for Ultra-Thin Film Gas Lubrication Using 1.5-Order Slip-Flow Model and Considering Surface Accommodation Coefficient[J].Journal of Tribology, 1993, 115(2): 289-294.
[10] Bahukudumbi P, Beskok A. A Phenomenological Lubrication Model for the Entire Knudsen Regime[J]. Journal of Micromechanics and Microengineering, 2003, 13(6).
[11] White J. Surface Roughness Effects on Air Bearing Performance over a Wide Range of Knudsen and Wave Numbers[J]. Journal of Tribology, 2010, 132(3).
[12] Xu F, Zhang G, Sun Y, et al. The Effect of Coulomb Friction in Foil Structure on the Static and Dynamic Performance of Bump Foil Journal Bearings[R]. ASME 2014-GT-25038.
[13] Paouris L I, Bompos D A, Nikolakopoulos P G. Simulation of Static Performance of Air Foil Bearings Using Coupled Finite Element and Computational Fluid Dynamics Techniques[J]. Journal of Engineering for Gas Turbines and Power, 2014, 136(2).
[14] 张文明, 孟光, 陈迪. 微转子系统径向气体轴承特性[J]. 机械工程学报, 2008, 44(5): 25-33.
[15] 方华, 常海萍, 张镜洋, 等. 润滑气体及箔片材料对气体动压轴承动特性影响分析[J]. 推进技术, 2014, 35(8): 1116-1122. (FANG Hua, CHANG Hai-ping, ZHANG Jing-yang, et al. Analysis of Lubrication Gas and Elastic Foil for Gas Foil Bearing Dynamic Characteristics[J]. Journal of Propulsion Technology, 2014, 35(8): 1116-1122.)
[16] Walowit J A, Anno J N, Hamrock B J. Modern Developments in Lubrication Mechanics[J]. Journal of Tribology, 1975, 99(2): 304-305.
[17] Ruscitto D, McCormick J, Gray S. Hydrodynamic Air Lubricated Compliant Surface Bearing for an Automotive Gas Turbine Engine[J]. Journal Bearing Performance, 1978, 523(2): 161-180. * 收稿日期:2016-02-02;修订日期:2016-04-28。作者简介:胡嘉麟,男,博士生,研究领域为转子动力学。E-mail: hujialin@iet.cn(编辑:梅瑛)
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