【24h】

A STATIC AND DYNAMIC MODEL FOR THREE-DIMENSIONAL, MULTI-MESH GEAR SYSTEMS

机译:三维多网面齿轮系统的静态和动态模型

获取原文
获取原文并翻译 | 示例

摘要

A static and dynamic model of a three-dimensional (3-D) helical gear pair is presented and extended to multi-mesh gear systems. The gear bodies are assumed to be rigid cylinders mounted on linear stiffnesses representing the bearings/housing. The mesh model is formulated by dividing each theoretical contact line into multiple contact segments. A deflection function that incorporates tooth modifications and six degree of freedom (DOF) gear motion is defined for each contact segment. This deflection function determines whether individual contact segments are in contact or not, and, if so, what mesh force exists at that segment. The net forces and moments of these contact segments provide a multi-dimensional mesh force vector that draws gear tilting into the six DOF vibration. These contact segments form a network of springs that eliminates the need to solve a detailed contact problem, albeit at the cost of some accuracy as compared to more complex 3-D gear models. Stiffness values of these springs are obtained from a commercial finite element (FE) program specifically designed for gears. Misalignments and lead/profile modifications can be modeled included in the analytical model without further reference to the FE software. This approach is expected to be more accurate than transmission error (TE) excited 3-D dynamic models that use the static load distribution and pre-specified variable mesh stiffness. The model is validated against FE software for static analysis of a helical gear pair. The model is used to compare the 3-D vibration modes of a helical and a spur idler gear system. The dynamic behavior near resonance and occurrence of nonlinear contact loss is investigated.
机译:提出了三维(3-D)斜齿轮副的静态和动态模型,并将其扩展到多啮合齿轮系统。齿轮箱假定为刚性圆柱体,安装在代表轴承/外壳的线性刚度上。通过将每个理论接触线划分为多个接触段来制定网格模型。为每个接触段定义了结合了齿修改和六自由度(DOF)齿轮运动的偏转功能。该偏转功能确定各个接触段是否接触,如果接触,则确定该段上存在什么啮合力。这些接触段的净力和力矩提供了多维啮合力矢量,该矢量将齿轮倾斜到六自由度振动中。这些接触段形成了一个弹簧网络,尽管与更复杂的3D齿轮模型相比,以牺牲一些精度为代价,但无需解决详细的接触问题。这些弹簧的刚度值是从专门为齿轮设计的商业有限元(FE)程序中获得的。可以在分析模型中对未对准和前导/轮廓修改进行建模,而无需进一步参考FE软件。与使用静态载荷分布和预先指定的可变网格刚度的传输误差(TE)激发的3-D动态模型相比,该方法有望更加准确。该模型已通过FE软件进行了验证,可用于斜齿轮副的静态分析。该模型用于比较斜齿轮和正齿轮的3D振动模式。研究了共振附近的动力学行为以及非线性接触损耗的发生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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