含双星排的多级行星机构的扭转振动模态计算分析
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作者:
作者单位:

1.重庆大学 高端装备机械传动国家重点实验室,重庆 400044;2.中国北方车辆研究所,北京 100072;3.湖北科技学院 自动化学院,湖北 咸宁 437100

作者简介:

邢庆坤(1983—),男,研究员,博士研究生,主要从事机电复合行星传动技术研究,(E-mail)xingqingkun@163.com。

通讯作者:

冯锦平,男,高级工程师,(E-mail)fengjinping@hbust.edu.cn。

中图分类号:

TH132.4

基金项目:

国家自然科学基金资助项目(52375040);湖北科技学院校内科研发展基金资助项目(BK202019)。


Torsional vibration modal analysis of a multistage planetary gear transmission system with a double-planet planetary gear set
Author:
Affiliation:

1.State Key Laboratory of Mechanical Transmission for Advanced Equipment, Chongqing University, Chongqing 400044, P. R. China;2.China North Vehicle Research Institute, Beijing 100072, P. R. China;3.College of Automation, Hubei University of Science and Technology, Xianning, Hubei 437100, P. R. China

Fund Project:

Supported by National Natural Science Foundation of China(52375040), and Scientific Research Development Foundation of Hubei University of Science and Technology(BK202019).

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    摘要:

    机电复合传动系统的激励幅值大、频率范围宽,更易激发扭转振动,降低传动品质和寿命。针对由单星排和双星排组成的某功率耦合机构的变速部件,考虑异型结构和阶梯轴的高阶动力学特性,建立了传动系统的集中参数扭振动力学模型,分析了行星排及传动系统的扭振模态,并进行了仿真对比,探索了结构参数对模态的影响。结果表明:动力学模型与仿真模型的固有频率平均相对误差为1.4%;行星排和传动系统均包含刚体模态、行星轮独立扭振模态及整体扭振模态,传动系统还包含异型结构局部模态;输入轴外径、啮合刚度、输出轴外径、啮合齿宽、输出输入轴端等效转动惯量对传动系统整体扭振模态的影响依次降低;啮合刚度对行星轮独立扭振模态影响显著。所述方法可为多级行星机构扭振分析及改善提供参考。

    Abstract:

    The transmission quality and fatigue life of electro-mechanical drive systems can be significantly affected by heavy loads and broadband excitation, which readily trigger torsional vibrations. To study the dynamic behavior of a transmission system composed of both single-planet and double-planet planetary gear sets within a power coupling mechanism, a lumped-parameter dynamic model was developed. This model incorporates the high-order dynamic characteristics of irregular structures and stepped shafts. The torsional modes of individual planetary gear sets and the overall transmission system were calculated and compared with simulation results. In addition, the effects of structural parameters on the natural frequencies of the system were investigated. The results show that the average relative error in natural frequencies between the proposed dynamic model and the simulation model is 1.4%, confirming the model's accuracy. Both individual planetary gear sets and the complete transmission system exhibit three categories of vibration modes: rigid body modes, independent torsional vibration modes of the planet gears, and overall torsional vibration modes. Furthermore, the full transmission system also exhibits localized modes associated with structural irregularities. Sensitivity analysis reveals that the structural parameters most affecting the system’s natural frequency, in descending order, are the outer diameter of the input shaft, meshing stiffness, outer diameter of the output shaft, effective meshing width of the planetary gear sets, output equivalent moment of inertia, and input equivalent moment of inertia. Notably, meshing stiffness significantly influences the independent torsional modes of the planetary gears. The methodology presented in this study offers a valuable reference for analyzing torsional vibrations in multistage planetary gear transmission systems.

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邢庆坤,冯锦平,张静,秦大同.含双星排的多级行星机构的扭转振动模态计算分析[J].重庆大学学报,2025,48(5):51-65.

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  • 收稿日期:2024-11-12
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  • 在线发布日期: 2025-07-11
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