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Effect of Shaft-bearing Configurations on Spiral Bevel Gear Mesh and Dynamics

机译:轴承配置对螺旋锥齿轮网和动力学的影响

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Spiral bevel gear dynamics are significantly affected by the flexibilities of shafts and bearings. In this study, a new shaft-bearing model has been proposed for computing the effective support stiffness. The results are applied to the lumped parameter dynamic model of spiral bevel geared rotor system with 3-bearing straddle-mounted pinion configuration. Also, using the multi-degree of freedom lumped parameter dynamic model and quasi-static three-dimensional finite element tooth contact analysis program, the responses of two typical shaft-bearing configurations used in automotive applications, that are the 3-bearing straddle mounted pinion configuration and the 2-bearing overhung mounted pinion configuration, are compared. The comparative analysis along with a set of parametric studies highlights their different contributions to the spiral bevel gear mesh characteristics and dynamic response. Though spiral bevel gear is used in this study, the methods and conclusions could be reasonably applied to other types of gear applications especially non-parallel types.
机译:螺旋锥齿轮动力学受轴和轴承的柔性的显着影响。在该研究中,已经提出了一种新的轴承模型来计算有效的支撑刚度。结果应用于螺旋锥齿轮转子系统的集成参数动态模型,用3轴承架起的小齿轮配置。此外,使用多程度的自由集合参数动态模型和准静态三维有限元齿触点分析程序,在汽车应用中使用的两个典型的轴承配置的响应,即3轴跨越齿轮相比,配置和2支承覆盖的小齿轮配置。比较分析以及一组参数研究突出了它们对螺旋锥齿轮网格特性和动态响应的不同贡献。虽然在本研究中使用螺旋锥齿轮,但方法和结论可以合理地应用于其他类型的齿轮应用,尤其是非平行类型。

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