School of Mechanical Engineering, Tiangong University, Tianjin, China.
Tianjin Key Laboratory of Modern Electromechanical Equipment Technology, Tianjin, China.
Sci Prog. 2020 Jan-Mar;103(1):36850419881078. doi: 10.1177/0036850419881078. Epub 2019 Oct 30.
Face gear transmission is a kind of space-meshing mechanism that is mainly used in the field of aviation. Compared with traditional transmission, it has the advantages of stability, reliability, low noise, and strong carrying capacity. However, owing to its complex tooth surface, there are no means to accurately model the face gear. Likewise, research based on the geometry is difficult. Therefore, the tooth surface equation of the face gear is derived in this article based on the meshing theory. Based on the equations, the point cloud of the face gear tooth surface is calculated, the complex tooth surface is generated, and the face gear is accurately modeled. Moreover, taking tooth surface friction excitation into consideration, a multi-degree-of-freedom nonlinear dynamic model of face gear transmission system is established, using the adaptive variable step length Runge-Kutta method. As shown in the results, the bifurcation diagram, phase diagram, time history diagram, and Poincaré section diagram are combined to analyze the influence of tooth surface friction and meshing frequency on the dynamic characteristics of the system.
面齿轮传动是一种主要应用于航空领域的空间啮合机构。与传统传动相比,它具有稳定性、可靠性、低噪声和承载能力强等优点。然而,由于其复杂的齿面,目前还没有手段能够对面齿轮进行精确建模。同样,基于几何的研究也很困难。因此,本文基于啮合理论对面齿轮的齿面方程进行了推导。基于这些方程,计算了面齿轮齿面的点云,生成了复杂的齿面,并对面齿轮进行了精确建模。此外,考虑到齿面摩擦激励,建立了面齿轮传动系统的多自由度非线性动力学模型,采用自适应变步长龙格-库塔法。结果表明,结合分岔图、相图、时程图和庞加莱截面图分析了齿面摩擦和啮合频率对系统动力学特性的影响。