1.西安工业大学 机电工程学院, 陕西 西安 710021
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刘志宇,刘波,董皓.齿面摩擦对多间隙弯扭耦合齿轮分岔特性的影响研究[J].机械传动,XXXX,XX(XX):7-12.
Liu Zhiyu Liu Bo Dong Hao.Study on the Influence of Tooth Surface Friction on Bifurcation Characteristic of Multiple Clearance Bending and Torsion Coupling Gear[J].Journal of Mechanical Transmission,XXXX,XX(XX):7-12.
刘志宇,刘波,董皓.齿面摩擦对多间隙弯扭耦合齿轮分岔特性的影响研究[J].机械传动,XXXX,XX(XX):7-12. DOI: 10.16578/j.issn.1004.2539.2019.10.002.
Liu Zhiyu Liu Bo Dong Hao.Study on the Influence of Tooth Surface Friction on Bifurcation Characteristic of Multiple Clearance Bending and Torsion Coupling Gear[J].Journal of Mechanical Transmission,XXXX,XX(XX):7-12. DOI: 10.16578/j.issn.1004.2539.2019.10.002.
为研究齿面摩擦影响下的齿轮分岔特性,基于集中参数理论,考虑了齿面摩擦、时变啮合刚度及齿侧间隙等非线性因素,建立了齿轮副6自由度的弯扭耦合振动模型;采用Runge-Kutta数值方法对模型进行求解,分析了随各种参数变化时,齿面摩擦对系统分岔特性的影响。结果表明,随着转速的增加,无齿面摩擦时混沌特性表现明显,且随着齿面摩擦的增大,系统混沌区域外部的分岔会带动混沌区域内部的分岔;随着齿侧间隙的增大,无齿面摩擦时系统振幅不断增大,且随着齿面摩擦的增大,混沌状态受到抑制;随齿面摩擦的增加,混沌区域的分块趋势和抑制效果随阻尼系数增大更加显著。
In order to study the gear bifurcation characteristic under the influence of tooth surface friction, based on the lumped parameter theory, considering the non-linear factors such as tooth surface friction, time-varying meshing stiffness, gear backlash and bearing clearance, a six-degree-of-freedom bending-torsion coupled vibration model of gear pairs is established. The Runge-Kutta numerical method is used to solve the model, and the influence of tooth surface friction on the bifurcation characteristics of the system is analyzed with various parameters. The results show that with the increase of rotational speed, the chaotic characteristics of the toothless surface friction are obvious, and with the increase of friction coefficient, the bifurcation outside the chaotic region will lead to the bifurcation inside the chaotic region. With the increase of tooth clearance, the amplitude of the system increases continuously without the tooth surface friction, and the chaotic state is inhibited with the increase of the tooth surface friction. With the increase of tooth surface friction, the blocking trend and suppression effect of the chaotic region are more significant with the increase of the damping coefficient.
齿面摩擦 多间隙 弯扭耦合 分岔特性
Tooth surface frictionMultiple clearanceTransverse-torsional couplingBifurcation characteristic
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