中国机械工程 ›› 2026, Vol. 37 ›› Issue (2): 353-360.DOI: 10.3969/j.issn.1004-132X.2026.02.010
• 机械基础工程 • 上一篇
莫帅1,2(
), 李亚鑫1,2, 吴生阳1,2, 赵新浩3, 陈素姣4, 彭南江5, 张伟1
收稿日期:2025-02-24
出版日期:2026-02-25
发布日期:2026-03-13
通讯作者:
莫帅
作者简介:莫 帅*(通信作者),男,1987年生,教授、博士研究生导师。研究方向为高端装备振动控制与故障动力学、关键核心基础零部件设计制造(高性能齿轮/轴承)。E-mail:moshuai2010@163.com。
基金资助:
MO Shuai1,2(
), LI Yaxin1,2, WU Shengyang1,2, ZHAO Xinhao3, CHEN Sujiao4, PENG Nanjiang5, ZHANG Wei1
Received:2025-02-24
Online:2026-02-25
Published:2026-03-13
Contact:
MO Shuai
摘要:
为研究非圆行星齿轮系统非线性动力学特性,基于非圆行星齿轮各构件运动关系建立非圆行星齿轮传动系统;考虑时变啮合刚度、齿侧间隙、啮合阻尼、激励频率等关键非线性因素,构建非圆行星齿轮非线性动力学模型;运用分岔图、相图和时域图等表征方法定量研究系统动态行为,揭示了不同参数条件下对系统振动响应的影响机制。结果表明,偏心率、啮合阻尼和激励频率变化的情况下系统表现出丰富的动力学行为;大阻尼和高激励频率有利于非圆行星齿轮系统的运行稳定;偏心率可调控太阳轮性能。
中图分类号:
莫帅, 李亚鑫, 吴生阳, 赵新浩, 陈素姣, 彭南江, 张伟. 非圆行星齿轮传动系统非线性动力学特性[J]. 中国机械工程, 2026, 37(2): 353-360.
MO Shuai, LI Yaxin, WU Shengyang, ZHAO Xinhao, CHEN Sujiao, PENG Nanjiang, ZHANG Wei. Nonlinear Dynamics Characteristics of Non-circular Planetary Gear Systems[J]. China Mechanical Engineering, 2026, 37(2): 353-360.
| 零件 | 质量/kg | 模数/mm | 齿数 | 齿宽/mm | 偏心率 |
|---|---|---|---|---|---|
| 太阳轮 | 5.25 | 2 | 30 | 35 | |
| 内齿圈 | 8.23 | 2 | 50 | 35 | 0.03 |
| 行星轮 | 0.84 | 2 | 10 | 35 |
表1 非圆行星齿轮结构参数
Tab.1 Structural parameters of non-circular planetary gear
| 零件 | 质量/kg | 模数/mm | 齿数 | 齿宽/mm | 偏心率 |
|---|---|---|---|---|---|
| 太阳轮 | 5.25 | 2 | 30 | 35 | |
| 内齿圈 | 8.23 | 2 | 50 | 35 | 0.03 |
| 行星轮 | 0.84 | 2 | 10 | 35 |
| 参数 | 内齿圈 | 太阳轮 | 行星轮 |
|---|---|---|---|
| 综合误差/μm | 10 | 10 | 10 |
| 平均啮合刚度/(GN·m | 1.8 | 2.3 | |
| 阻尼 | 0.1 | 0.1 | 0.1 |
| 转速/(r·min | 700 |
表2 非圆行星齿轮动力学参数
Tab.2 Dynamic parameters of non-circular planetary gear
| 参数 | 内齿圈 | 太阳轮 | 行星轮 |
|---|---|---|---|
| 综合误差/μm | 10 | 10 | 10 |
| 平均啮合刚度/(GN·m | 1.8 | 2.3 | |
| 阻尼 | 0.1 | 0.1 | 0.1 |
| 转速/(r·min | 700 |
| [1] | AO Meng, YU Gaohong, WANG Lei, et al. Optimization Synthesis of Hybrid Six-bar Mechanism with Non-circular Gear Constraints[J]. Journal of Mechanical Design, 2023, 145(6): 064502. |
| [2] | ADDOMINE M, FIGLIOLINI G, PENNESTRÌ E. A Landmark in the History of Non-circular Gears Design: The Mechanical Masterpiece of Dondi’s Astrarium[J]. Mechanism and Machine Theory, 2018, 122: 219-232. |
| [3] | HAN Xinghui, HE Chen, ZHENG Fangyan, et al. Transmission Performance Evaluation of Non-circular Spur Bevel Gear Based on a Novel Isochronal Measurement Method[J]. Mechanism and Machine Theory, 2023, 185: 105329. |
| [4] | HU Yanan, LIN Chao, HE Chunjiang, et al. Design of Linear Functional Noncircular Gear with High Contact Ratio Used in Continuously Variable Transmission[J]. Chinese Journal of Mechanical Engineering, 2023, 36(1): 71. |
| [5] | BURROWS M, SUTTON G. Interacting Gears Synchronize Propulsive Leg Movements in a Jumping Insect[J]. Science, 2013, 341(6151): 1254-1256. |
| [6] | 李渤涛, 陈定方. 非圆齿轮设计、制造、检测及应用[J]. 机械工程学报, 2020, 56(9): 55-72. |
| LI Botao, CHEN Dingfang. Design, Manufacture, Inspection and Application of Non-circular Gears[J]. Journal of Mechanical Engineering, 2020, 56(9): 55-72. | |
| [7] | ZHANG Xu, ZHONG Jiaxin, LI Wei, et al. Nonlinear Dynamic Analysis of High-speed Gear Pair with Wear Fault and Tooth Contact Temperature for a Wind Turbine Gearbox[J]. Mechanism and Machine Theory, 2022, 173: 104840. |
| [8] | XIA Heng, MENG Fanshan, ZHANG Xin, et al. Nonlinear Dynamics Analysis of Gear System Considering Time-varying Meshing Stiffness and Backlash with Fractal Characteristics[J]. Nonlinear Dynamics, 2023, 111(16): 14851-14877. |
| [9] | ZHENG Xingyuan, LUO Wenjun, HU Yumei, et al. Study on the Mesh Stiffness and Nonlinear Dynamics Accounting for Centrifugal Effect of High-speed Spur Gears[J]. Mechanism and Machine Theory, 2022, 170: 104686. |
| [10] | 莫帅, 黄祖瑞, 刘翊恒, 等. 航空非正交偏置面齿轮分汇流系统非线性动力学[J]. 力学学报, 2024,56(4): 1110-1122. |
| MO Shuai, HUANG Zurui, LIU Yiheng, et al. Non-linear Dynamics of Aeronautical Non-orthogonal Offset Gear Split Flow System[J]. Chinese Journal of Theoretical and Applied Mechanics, 2024, 56(4): 1110-1122. | |
| [11] | 莫帅, 曾彦钧, 王震, 等. 高速重载人字齿轮传动非线性动力学分析[J]. 力学学报, 2023, 55(10): 2381-2392. |
| MO Shuai, ZENG Yanjun, WANG Zhen, et al. Nonlinear Dynamic Analysis of High Speed and Heavy Load Herringbone Gear Transmission[J]. Chinese Journal of Theoretical and Applied Mechanics, 2023, 55(10): 2381-2392. | |
| [12] | 莫帅, 周长鹏, 王檑, 等. 机器人关节裂纹传动系统机电耦合动态特性研究[J]. 机械工程学报, 2022, 58(19): 57-67. |
| MO Shuai, ZHOU Changpeng, WANG Lei, et al. Study on Dynamic Characteristics of Electromechanical Coupling of Robot Joint Crack Transmission System[J]. Journal of Mechanical Engineering, 2022, 58(19): 57-67. | |
| [13] | MO Shuai, ZHANG Yingxin, SONG Yuling, et al. Nonlinear Vibration and Primary Resonance Analysis of Non-orthogonal Face Gear-rotor-bearing System[J]. Nonlinear Dynamics, 2022, 108(4): 3367-3389. |
| [14] | MO Shuai, ZHANG Ting, JIN Guoguang, et al. Analytical Investigation on Load Sharing Characteristics of Herringbone Planetary Gear Train with Flexible Support and Floating Sun Gear[J]. Mechanism and Machine Theory, 2020, 144: 103670. |
| [15] | MO Shuai, LI Yuhua, WANG Dongdong, et al. An Analytical Method for the Meshing Characteristics of Asymmetric Helical Gears with Tooth Modifications[J]. Mechanism and Machine Theory, 2023, 185: 105321. |
| [16] | MO Shuai, LUO Bingrui, SONG Wenhao, et al. Geometry Design and Tooth Contact Analysis of Non-orthogonal Asymmetric Helical Face Gear Drives[J]. Mechanism and Machine Theory, 2022, 173: 104831. |
| [17] | LUO Wei, QIAO Baijie, SHEN Zhixian, et al. Investigation on the Influence of Spalling Defects on the Dynamic Performance of Planetary Gear Sets with Sliding Friction[J]. Tribology International, 2021, 154: 106639. |
| [18] | LAI Junbin, LIU Yanfang, XU Xiangyang, et al. Dynamic Modeling and Analysis of Ravigneaux Planetary Gear Set with Unloaded Floating Ring Gear[J]. Mechanism and Machine Theory, 2022, 170: 104696. |
| [19] | 董长斌, 李龙坤, 刘永平. 非圆齿轮行星轮系非线性动力学特性分析[J]. 哈尔滨工业大学学报, 2024, 56(8): 94-102. |
| DONG Changbin, LI Longkun, LIU Yongping. Analysis of Nonlinear Dynamic Characteristics of Non-circular Planetary Gear Systems[J]. Journal of Harbin Institute of Technology, 2024, 56(8): 94-102. | |
| [20] | DONG Changbin, LI Longkun, LIU Yongping, et al. Translation Torsion Coupling Dynamic Modeling and Nonlinearities Investigation of Non-circular Planetary Gear Systems[J]. Nonlinear Dynamics, 2024, 112(21): 18931-18948. |
| [21] | 夏链, 张义恒, 韩江. 基于时变啮合力的非圆齿轮传动动态磨损研究[J]. 机械传动, 2023, 47(6): 1-7. |
| XIA Lian, ZHANG Yiheng, HAN Jiang. Research on Dynamic Wear of Non-circular Gear Transmission Based on the Time-varying Meshing Force[J]. Journal of Mechanical Transmission, 2023, 47(6): 1-7. | |
| [22] | 喻永权, 林超, 胡亚楠. 不同重合度非圆齿轮设计及弯曲应力分析[J]. 机械工程学报, 2022, 58(19): 206-220. |
| YU Yongquan, LIN Chao, HU Yanan. Design and Bending Stress Analysis of Non-circular Gears with Different Contact Ratio[J]. Journal of Mechanical Engineering, 2022, 58(19): 206-220. |
| [1] | 莫帅, 张燕琛, 李亚鑫, 李贝贝, 陈素姣, 彭南江, 张伟. 铝合金搅拌摩擦焊系统非线性振动特性[J]. 中国机械工程, 2025, 36(12): 3023-3029. |
| [2] | 莫帅, 黄轩, 刘文斌, 张伟. 连续可调行星齿轮超材料非线性动力学[J]. 中国机械工程, 2025, 36(11): 2509-2516. |
| [3] | 王磊1, 2, 方子辰1, 王振涛1, 孙良1, 2, 俞高红1, 2, 崔荣江3. 不等速行星轮系机构混合多位姿综合方法及应用[J]. 中国机械工程, 2024, 35(12): 2211-2220. |
| [4] | 王建, 缪龙, 张文祥, 王树坤. 跳跃机器人能量转换的主动控制与试验测试[J]. 中国机械工程, 2022, 33(24): 2961-2970. |
| [5] | 汪军水, 贾翔宇, 张剀, 徐旸. 磁轴承转子跌落在保护轴承上的动力学研究[J]. 中国机械工程, 2022, 33(20): 2403-2413,2419. |
| [6] | 汪飞雪, 刘亚, 臧新良 . 非圆齿轮差动轮系往复机构反求设计与运动学分析[J]. 中国机械工程, 2021, 32(06): 697-704. |
| [7] | 张宁;李田;殷国栋;吴建华;赵子乾. 转向系参数对汽车拖车组合系统稳定性的影响[J]. 中国机械工程, 2020, 31(21): 2521-2528. |
| [8] | 刘大伟1,2;刘佳佳1. 面向管道机器人的非对称惯性驱动系统及其动力学特性[J]. 中国机械工程, 2020, 31(18): 2189-2195,2205. |
| [9] | 林超1;夏锡光1;邢庆坤2;刘文思1. 非圆齿轮型间歇转动机构的设计与运动特性分析[J]. 中国机械工程, 2020, 31(10): 1142-1148. |
| [10] | 孙友刚1,2;董达善1;强海燕1,2;王冉1. 深海张力腿平台非线性涡激振动响应特性分析[J]. 中国机械工程, 2018, 29(14): 1666-1673. |
| [11] | 王俊国;肖遥;杨旭峰;赵永翔;方修洋. 牵引电机扭矩激扰的机车齿轮传动系统非线性特性[J]. 中国机械工程, 2018, 29(11): 1296-1302. |
| [12] | 张永顺1,2;姜万录1;苏晓1;雷亚飞1. 二通插装阀非线性动力学行为[J]. 中国机械工程, 2018, 29(10): 1159-1165. |
| [13] | 韩江;高婷;李大柱;夏链. 非圆齿轮齿面加工余量匀化工艺研究与实现[J]. 中国机械工程, 2018, 29(09): 1031-1038. |
| [14] | 叶军1,2;陈建能1,3;赵雄1,3;孙新城2;夏旭东1,3;高奇峰2. 一种新型类偏心圆非圆齿轮设计及其应用[J]. 中国机械工程, 2018, 29(05): 565-571,578. |
| [15] | 陶德华1;王英1;陈建能2;荣权升1;周贤1;束学道1. 脉动血流发生器非圆齿轮-曲柄滑块式驱动机构设计与分析[J]. 中国机械工程, 2017, 28(16): 1914-1920,1927. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||