1. 江苏大学汽车工程研究院
2. 西北工业大学机电学院
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[1]王峰,张健,徐兴,方宗德,陈龙,孙晓强.圆柱人字齿轮各内激励因素对齿面振动影响比例分析[J].机械传动,2018,42(07):1-4.
Wang Feng, Zhang Jian, Xu Xing, et al. Proportion Analysis of the Influence of Internal Excitation Factor on Tooth Surface Vibration of Cylindrical Herringbone Gear[J]. 2018,42(7):1-4.
[1]王峰,张健,徐兴,方宗德,陈龙,孙晓强.圆柱人字齿轮各内激励因素对齿面振动影响比例分析[J].机械传动,2018,42(07):1-4. DOI: 10.16578/j.issn.1004.2539.2018.07.001.
Wang Feng, Zhang Jian, Xu Xing, et al. Proportion Analysis of the Influence of Internal Excitation Factor on Tooth Surface Vibration of Cylindrical Herringbone Gear[J]. 2018,42(7):1-4. DOI: 10.16578/j.issn.1004.2539.2018.07.001.
为了研究圆柱人字齿轮各内激励因素对齿面振动的影响,建立同时考虑时变啮合刚度激励、轮齿线外啮入冲击激励和齿侧间隙影响的圆柱人字齿轮耦合动力学模型;针对不同的载荷和输入转速工况,分别计算啮合刚度激励、啮入冲击力激励以及齿侧间隙对圆柱齿轮系统齿面相对振动的影响程度。实例仿真计算表明,人字齿轮各内激励因素中,啮合刚度激励对振动影响占主要成分;齿侧间隙影响则是低转矩下的影响高于大转矩下的影响,高转速下的影响高于低转速下的影响,即当低速重载下,齿侧间隙非线性因素对系统影响较小。总结的各激励成分对系统振动影响比例规律,能够为后续人字齿轮齿面减振降噪优化提供更合理的设计目标。
In order to analyze the influence of internal excitation factors on tooth surface vibration of cylindrical herringbone gear,the herringbone gear vibration model is established considering time-varying meshing stiffness excitation,corner mesh impact force excitation,and the backlash influence. The influences of internal excitation factors on tooth surface vibration of cylindrical herringbone gear are calculated according to different load and speed conditions. Taking the one-stage herringbone gear transmission system as an example,the simulation results consistently show that meshing stiffness excitation is the main influencing factor on vibration of herringbone gear. The influences of backlash increase with the rotation speeds increase,but decrease with the loads increase. Those influence rules provide a more reasonable design target for the follow-up tooth surface vibration and noise reduction optimization.
圆柱人字齿轮刚度激励冲击激励振动影响比例分析
Cylindrical herringbone gearStiffness excitationImpact excitationVibration influenceProportion analysis
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