首页> 外文OA文献 >Influence of Rotating Tire Dynamics on Vehicle System Vibrations
【2h】

Influence of Rotating Tire Dynamics on Vehicle System Vibrations

机译:旋转轮胎动力学对车辆系统振动的影响

摘要

In the present study, a new two-dimensional hybrid quarter-car model has been developed. The hybrid model takes into account the inertia of the discrete vehicle body mounted on suspension and the dynamics of the rotating tire modeled as a continuous ring. The contact force between the tire and road is defined as a function of the bounce vibration of the vehicle as well as a function of the radial and tangential displacements and accelerations of the tire. The effects of the vibrating system on the contact force are investigated. Three different types of solution are presented: the Galerkin method, the finite element method, and the exact analytical method. Different solutions are used to validate the accuracy of the results. The mode shapes of the center-fixed rotating ring are used as admissible functions in the Galerkin method. In the finite element method, a curved beam is used as the element. The equations are derived in a non-rotating coordinate system. In other words, the nodes do not rotate. However, the material of the ring does rotate by flowing through the non-rotating nodes. The analytical study presents the closed-form solutions of the horizontal displacement and of the vertical displacement of the center of the tire (unsprung mass) as well as the displacement of the vehicle body (sprung mass). This method also provides the radial displacement and the tangential displacement of the rotating ring in the non-rotating coordinate system, all the displacements of the ring being measured with respect to the center of the ring. The results obtained by the different methods are compared and discussed. The natural frequencies of this hybrid system are compared with those obtained for a center-fixed ring. Also the damped frequencies of the system are obtained for different velocities of the vehicle. The mode shapes of the hybrid model are complex because of the rotating tire. Moreover, the response of the hybrid model to the random excitation caused by the road is studied. Results show that the rotation of the tire and the bounce vibration of the vehicle body affect the dynamic forces at the contact point. These results are compared with those of the conventional 2-DOF quarter-car model.
机译:在本研究中,已经开发了一种新的二维混合动力四分之一汽车模型。混合模型考虑了安装在悬架上的离散车身的惯性和建模为连续环的旋转轮胎的动力学。轮胎与道路之间的接触力定义为车辆反弹振动的函数,以及轮胎的径向和切向位移和加速度的函数。研究了振动系统对接触力的影响。提出了三种不同类型的解决方案:Galerkin方法,有限元方法和精确分析方法。使用不同的解决方案来验证结果的准确性。中心固定旋转环的众数形状在Galerkin方法中用作允许的功能。在有限元法中,使用弯曲梁作为单元。这些方程是在非旋转坐标系中导出的。换句话说,节点不旋转。但是,环的材料确实会通过流过非旋转节点而旋转。分析研究提供了轮胎中心的水平位移和垂直位移(未悬挂的质量)以及车身的位移(悬挂的质量)的封闭形式的解。该方法还提供了在非旋转坐标系中旋转环的径向位移和切向位移,其中环的所有位移都是相对于环的中心进行测量的。比较和讨论了通过不同方法获得的结果。将这种混合系统的固有频率与从中心固定环获得的固有频率进行比较。还针对车辆的不同速度获得了系统的阻尼频率。混合模型的模式形状由于轮胎旋转而变得复杂。此外,研究了混合模型对道路引起的随机激励的响应。结果表明,轮胎的旋转和车身的反弹振动会影响接触点处的动力。将这些结果与常规2自由度四分之一车模型的结果进行了比较。

著录项

  • 作者

    Saeedi Khodabakhsh;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号