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Rotordynamics analysis of a double-helical gear transmission system

机译:双斜齿轮传动系统的转子动力学分析

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The rotordynamics of a double-helical gear transmission system is investigated. The equation of motion of the system with bearing and gyroscopic effect is derived by using the finite element method, in which Timoshenko beam finite element is used to represent the shaft, a rigid mass for the gear. Natural frequencies, mode shapes and Campbell diagrams are illustrated to indicate the effects of gear input speed and time varying mesh stiffness. Besides, effects of mesh stiffness on the critical speed of the gear transmission system are analyzed. The numerical results show that the axial force has significant influence on the natural frequency and the mode shape of the double-helical gear transmission system, for which the mix whirling motion dominates the natural characteristics. There are two higher critical speed curves which increase with the mesh stiffness, but one of them is related to the gyroscopic effect.
机译:研究了双斜齿轮传动系统的转子动力学。利用有限元方法推导了具有轴承和陀螺效应的系统的运动方程,其中蒂莫申科梁有限元用于表示轴,即齿轮的刚性质量。示出了固有频率,模态形状和坎贝尔图,以指示齿轮输入速度和时变网格刚度的影响。此外,分析了啮合刚度对齿轮传动系统临界转速的影响。数值结果表明,轴向力对双斜齿轮传动系统的固有频率和振型有很大影响,混合涡流运动主导了固有特性。有两个较高的临界速度曲线,它们随着网格刚度的增加而增加,但是其中之一与陀螺效应有关。

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