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Dynamic analysis of a double-helical geared rotor system with oil-film bearing

机译:具有油膜轴承双螺旋齿轮转子系统的动态分析

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Purpose - This paper aims to study a dynamic analysis of a double-helical geared rotor system with oil-film bearing. Design/methodology/approach - A finite element model of a double-helical geared rotor system with oil-film bearing is developed, in which a rigid mass is used to represent the gear and the Timoshenko beam finite element represents the shaft; the equations of motion are obtained by applying Lagrange's equation. Natural frequencies, Campbell diagram, lateral responses, axial responses, bearing stiffness coefficients, bearing damping coefficients and bearing force are investigated. Findings - Natural frequencies and Campbell diagram of a double-helical geared rotor system with oil-film bearing are investigated. An increased helical angle enhanced the axial response of the system and reduced its lateral response. The distance between the node and bearing affected the lateral response magnitude on the node. The farther away the gear pair was from the central part of the shaft, the higher the system's resonance frequency became. The different gear pair position has a significant influence on the bearing stiffness coefficient and bearing force, but it just has a little effect on the bearing damping coefficient. Practical implications - The model of a double-helical geared rotor system with oil-film bearing is established in this paper. The dynamic characteristics of a double-helical geared rotor system with oil-film bearing are investigated. The numerical results of this study can be used as a reference for subsequent personnel research. Originality/value - Although the dynamics characteristics of geared rotor bearing system have been reported in some literature, the dynamic analysis of a double-helical geared rotor-bearing system is still rarely investigated. This paper showed some novel results that lateral and axial response results are obtained by the different helical angle and different gear positions. In the future, it makes valuable contributions for further development of dynamic analysis of a double-helical geared rotor-bearing system.
机译:目的 - 本文旨在研究用油膜轴承双螺旋齿轮转子系统的动态分析。设计/方法/方法 - 开发了具有油膜轴承的双螺旋齿轮转子系统的有限元模型,其中刚性质量用于表示齿轮,Timoshenko束有限元表示轴;通过应用拉格朗日的等式获得运动方程。研究了天然频率,坎贝尔图,横向响应,轴向响应,轴承刚度系数,轴承阻尼系数和承载力。调查结果 - 研究了具有油膜轴承的双螺旋齿轮转子系统的固有频率和坎贝尔图。增加的螺旋角增强了系统的轴向响应并降低了其横向响应。节点与轴承之间的距离影响了节点上的横向响应幅度。齿轮对越远离轴的中心部分,系统的共振频率越高。不同的齿轮对位置对轴承刚度系数和轴承力具有显着影响,但它对轴承阻尼系数有点影响。实际意义 - 本文建立了具有油膜轴承的双螺旋齿轮转子系统的模型。研究了具有油膜轴承的双螺旋齿轮转子系统的动态特性。该研究的数值结果可作为后续人员研究的参考。原创性/值 - 尽管在一些文献中报告了齿轮转子轴承系统的动力学特性,但是仍然很少研究双螺旋齿轮轴承系统的动态分析。本文展示了一些新颖的结果,即通过不同的螺旋角和不同的齿轮位置获得横向和轴向响应结果。在未来,它为双螺旋齿轮轴承系统的动态分析进行了有价值的贡献。

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