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Modal Analysis of Double-Helical Planetary Gears With Numerical and Analytical Approach

机译:双斜齿轮行星齿轮的模态分析及数值分析

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摘要

The vibration modal properties of double-helical planetary gear (DHPG) system with three-dimensional motion are investigated with a combined use of numerical and analytical approach in this paper. The lumped-parameter model of the DHPG considering stiffness coupled between the left gear and the right gear is developed. Load-sharing with journal bearings is accepted in this planetary gear system, so that four stiffness coefficients can be applied to describe the dynamic behavior between the planet gear and the carrier. The model has three planar degrees of freedom for the carrier and an added axial degree of freedom for all gears, considering the effect of axial dynamic forces. The vibration equations are obtained according to Lagrange equation. A modal type distribution map is plotted initially to simplify modal classification. With the application of this modal type distribution map, all vibration modes are categorized distinctly into three essentially different types of modes including planet mode (PM), rotational-axial mode (RAM), and planer-translational mode (PTM). Unique characteristics of these vibration modes, such as, eigenvalue number, multiplicity of natural frequencies and deflection relations, are deduced and proved analytically. For each type of vibration modes, the reduced-order eigenvalue problems are derived.
机译:本文结合数值和解析方法,研究了具有三维运动的双斜齿轮行星齿轮箱(DHPG)系统的振动模态特性。建立了考虑到左齿轮和右齿轮之间的刚度的DHPG集总参数模型。在这种行星齿轮系统中可以接受带有轴颈轴承的负载分担,因此可以应用四个刚度系数来描述行星齿轮和行星架之间的动态行为。考虑到轴向动态力的影响,该模型的行星架具有三个平面自由度,所有齿轮都有一个附加的轴向自由度。根据拉格朗日方程获得振动方程。最初绘制模态类型分布图以简化模态分类。通过使用此模态类型分布图,将所有振动模式明确地分为三种基本不同的模式,包括行星模式(PM),旋转轴向模式(RAM)和平面平移模式(PTM)。推导并分析证明了这些振动模式的独特特征,例如特征值数,固有频率的多样性和挠度关系。对于每种类型的振动模式,都可以导出降阶特征值问题。

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