| [1] |
HYLTON P D. Minimizing dynamic response of counter-rotating engines through optimized node placement[C]∥ ASME Turbo Expo 2010: Power for Land, Sea, and Air. New York: ASME,2010: 25-32.
|
| [2] |
HARRIS T A, KOTZALAS M N. Advanced concepts of bearing technology: Rolling bearing analysis[M]. 5th ed. Boca Raton: CRC Press, 2006.
|
| [3] |
HARRIS T A, KOTZALAS M N. Advanced concepts of bearing technology: rolling bearing analysis[M]. 5thed Boca Raton: CRC Press, 2006.
|
| [4] |
YANG Z F, HONG J, WANG D, et al. Failure analysis of an aero-engine inter-shaft bearing due to clearance between the outer ring and its housing[J]. Engineering Failure Analysis, 2023, 150: 107298.
|
| [5] |
TAKABI J, KHONSARI M M. On the thermally-induced failure of rolling element bearings[J]. Tribology International, 2016, 94: 661-674.
|
| [6] |
JACOBS W, VAN HOOREWEDER B, BOONEN R, et al. The influence of external dynamic loads on the lifetime of rolling element bearings: Experimental analysis of the lubricant film and surface wear[J]. Mechanical Systems and Signal Processing, 2016, 74: 144-164.
|
| [7] |
郑德志, 王黎钦, 古乐, 等. 航空发动机用高速滚动轴承性能考核及失效分析[J]. 润滑与密封, 2006, 31(7): 51-53, 57.
|
|
ZHENG D Z, WANG L Q, GU L, et al. Monitoring and failure analysis of high speed rolling bearing for aeroengine[J]. Lubrication Engineering, 2006, 31(7): 51-53, 57 (in Chinese).
|
| [8] |
郑金涛, 邓四二, 张文虎, 等. 航空发动机主轴滚子轴承非典型失效机理[J]. 航空学报, 2020, 41(5): 423347.
|
|
ZHENG J T, DENG S E, ZHANG W H, et al. Atypical failure mechanism of aero-engine main shaft roller bearing[J]. Acta Aeronautica et Astronautica Sinica, 2020, 41(5): 423347 (in Chinese).
|
| [9] |
李锦标, 吴林丰. 高速滚子轴承的动力学分析[J]. 航空学报, 1992, 13(12): 625-632.
|
|
LI J B, WU L F. Dynamic analysis of high-speed roller bearings[J]. Acta Aeronautica et Astronautica Sinica, 1992, 13(12): 625-632 (in Chinese).
|
| [10] |
LEBLANC A, NELIAS D, DEFAYE C. Nonlinear dynamic analysis of cylindrical roller bearing with flexible rings[J]. Journal of Sound and Vibration, 2009, 325(1-2): 145-160.
|
| [11] |
WANG Y S, JIN N N, ZHU H F. Analysis on dynamic characteristics of high speed cylindrical roller bearing[J]. Key Engineering Materials, 2011, 480-481: 980-985.
|
| [12] |
GAO W J, NELIAS D, LYU Y G, et al. Numerical investigations on drag coefficient of circular cylinder with two free ends in roller bearings[J]. Tribology International, 2018, 123: 43-49.
|
| [13] |
PATRA P, SARAN V H, HARSHA S P. Non-linear dynamic response analysis of cylindrical roller bearings due to rotational speed[J]. Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics, 2019, 233(2): 379-390.
|
| [14] |
江齐, 姬贺炯, 朱剑寒, 等. 基于有限元方法的航空发动机轴承座动强度设计方法研究[J]. 推进技术, 2023, 44(4): 189-194.
|
|
JIANG Q, JI H J, ZHU J H, et al. Aeroengine bearing housing dynamic strength design method based on finite element method[J]. Journal of Propulsion Technology, 2023, 44(4): 189-194 (in Chinese).
|
| [15] |
陈星. 航空发动机轴承的可靠性分析及优化设计[D]. 成都: 电子科技大学, 2023.
|
|
CHEN X. Reliability analysis and optimization design of aero-engine bearing[D]. Chengdu: University of Electronic Science and Technology of China, 2023 (in Chinese).
|
| [16] |
刘棣, 李超, 马艳红, 等. 柔性转子动力学特性及支承结构安全性设计[J]. 航空发动机, 2021, 47(2): 45-51.
|
|
LIU D, LI C, MA Y H, et al. Aeroengine flexibility rotor dynamics and support structure safety design[J]. Aeroengine, 2021, 47(2): 45-51 (in Chinese).
|
| [17] |
王东, 洪杰, 李其建, 等. 双转子航空发动机中介支点动载荷控制研究[J]. 航空动力学报, 2025, 40(2): 20230252.
|
|
WANG D, HONG J, LI Q J, et al. Dynamic load control of intermediate fulcrum of dual rotor aero-engine[J]. Journal of Aerospace Power, 2025, 40(2): 20230252.
|
| [18] |
洪杰, 杨哲夫, 孙博, 等. 局部旋转惯性对转子系统动力特性的影响[J]. 航空动力学报, 2022, 37(4): 673-683.
|
|
HONG J, YANG Z F, SUN B, et al. Influence of local rotary inertia on the dynamic properties of rotor systems[J]. Journal of Aerospace Power, 2022, 37(4): 673-683 (in Chinese).
|
| [19] |
倪振华. 振动力学[M]. 西安: 西安交通大学出版社, 1989.
|
|
NI Z H. Vibration mechanics[M]. Xi’an: Xi’an Jiaotong University Press, 1989 (in Chinese).
|
| [20] |
中国人民解放军总装备部. 军用装备实验室环境试验方法第18部分:冲击试验 GJB 150.18A—2009 [S]. 北京: 中国人民解放军总装备部, 2009.
|
|
General Armament Department of the Chinese People’s Liberation Army. Military equipment laboratory environmental test methods part 18: Shock test GJB 150.18A-2009 [S]. Beijing: General Armament Department of the Chinese People’s Liberation Army, 2009 (in Chinese).
|
| [21] |
王东, 韩卓荦, 杨哲夫, 等. 连接结构刚度非对称对高速转子动力特性影响[J]. 航空动力学报, 2024, 39(12): 20220995.
|
|
WANG D, HAN Z L, YANG Z F, et al. Influence of unsymmetrical stiffness of joints on high-speed rotor dynamic characteristics[J]. Journal of Aerospace Power, 2024, 39(12): 20220995 (in Chinese).
|
| [22] |
洪杰, 王华, 肖大为, 等. 转子支承动刚度对转子动力特性的影响分析[J]. 航空发动机, 2008, 34(1): 23-27.
|
|
HONG J, WANG H, XIAO D W, et al. Effects of dynamic stiffness of rotor bearing on rotordynamic characteristics[J]. Aeroengine, 2008, 34(1): 23-27 (in Chinese).
|
| [23] |
YANG Z F, HONG J, WANG D, et al. Vibration analysis of rotor systems with bearing clearance using a novel conformal contact model[J]. Nonlinear Dynamics, 2024, 112(10): 7951-7976.
|
| [24] |
雷冰龙, 李超, 洪杰, 等. 转子连接结构力学特性稳健设计[J]. 航空发动机, 2021, 47(2): 38-44.
|
|
LEI B L, LI C, HONG J, et al. Robust design of mechanical characteristics of rotor connection structure[J]. Aeroengine, 2021, 47(2): 38-44 (in Chinese).
|
| [25] |
洪杰, 徐筱李, 梁天宇, 等. 转子结构系统界面失效分析及稳健设计方法[J]. 航空动力学报, 2018, 33(3): 649-656.
|
|
HONG J, XU X L, LIANG T Y, et al. Interface failure analysis and robust design method in rotor structural system[J]. Journal of Aerospace Power, 2018, 33(3): 649-656 (in Chinese).
|
| [26] |
洪杰, 徐翕如, 苏志敏, 等. 高速转子连接结构刚度损失及振动特性[J]. 北京航空航天大学学报, 2019, 45(1): 18-25.
|
|
HONG J, XU X R, SU Z M, et al. Joint stiffness loss and vibration characteristics of high-speed rotor[J]. Journal of Beijing University of Aeronautics and Astronautics, 2019, 45(1): 18-25 (in Chinese).
|
| [27] |
马艳红, 倪耀宇, 陈雪骑, 等. 长拉杆-止口连接弯曲刚度损失及对转子系统振动响应影响[J]. 航空学报, 2021, 42(3): 223861.
|
|
MA Y H, NI Y Y, CHEN X Q, et al. Bending stiffness loss of rod-rabbet joints and its effect on vibration response of rotor systems[J]. Acta Aeronautica et Astronautica Sinica, 2021, 42(3): 223861 (in Chinese).
|
| [28] |
顾家柳. 转子动力学[M]. 北京: 国防工业出版社, 1985.
|
|
GU J L. Rotordynamics[M]. Beijing: National Defense Industry Press, 1985 (in Chinese).
|
| [29] |
HONG J, YANG Z F, WANG Y F, et al. Combination resonances of rotor systems with asymmetric residual preloads in bolted joints[J]. Mechanical Systems and Signal Processing, 2023, 183: 109626.
|
| [30] |
彭刚, 李超, 曹冲, 等. 冲击激励转子系统动力学响应及安全性设计[J]. 推进技术, 2018, 39(5): 1111-1121.
|
|
PENG G, LI C, CAO C, et al. Dynamic response and safety design of rotor system with impact excitation[J]. Journal of Propulsion Technology, 2018, 39(5): 1111-1121 (in Chinese).
|