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Analysis of a Rotor Supported by Angular Contact Ball Bearings Under EHD Lubrication

机译:EHD润滑下角接触球轴承支撑的转子分析

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Rotors are crucial components of machinery, widely used in different areas of industry, as compressors, automotive transmissions, wind turbines and others. The development of accurate computational models able to aid the project phase of rotating machines is essential to drop tests and prototypes costs and to reduce processing time consumption, with good performance in predicting the dynamic behaviors of rotor-bearing systems. The present work studies the Laval Rotor modeled with a five-degrees-of-freedom decentered disc subject to rotating unbalanced force and combining radial and thrust loads. The rotor is supported on two ball bearings with angular contact under elastohy-drodynamic (EHD) lubrication. Although these bearings are identical, they are under different loads due to forces distribution, being, consequently, characterized separately. In order to obtain stiffness and damping equivalent parameters for each bearing, in axial and radial directions, an optimization is carried out, integrating the dynamic equilibrium of the bearings' spheres with the transient multi-level algorithm solution of EHD equations. Further on, a lumped parameter model of the rotor is analyzed. The shaft inertia is assumed negligible, and its stiffness matrix is obtained using influence coefficients. The dissipative forces approach considers proportional structural damping. As consequence of the disc decentered position, a gyroscopic component is present in the system. The nonlinear bearings reaction forces are included in the model as external forces and the complete system of equations is solved in time domain, enabling the analysis of rotor and bearing responses. Finally, the fundamental frequencies of the complete system are obtained.
机译:转子是机械的关键部件,广泛用于不同的工业领域,作为压缩机,汽车变速器,风力涡轮机等。能够帮助旋转机器项目阶段的精确计算模型的开发对于降低测试和原型成本并降低处理时间消耗,具有良好的性能在预测转子系统的动态行为方面是必不可少的。本工作研究了用五种自由度的遮光盘模型,受到旋转不平衡力并组合径向和推力载荷的圆盘。转子支撑在两个滚珠轴承上,弹性流动(EHD)润滑下具有角度接触的滚珠轴承。虽然这些轴承是相同的,但由于力分布,它们在不同的载荷下,因此,因此分别表征。为了获得每个轴承的刚度和阻尼的等效参数,在轴向和径向方向上,进行优化,与EHD方程的瞬态多级算法解决方案集成轴承球的动态平衡。此外,分析转子的集总参数模型。假设轴惯性可忽略不计,并且使用影响系数获得其刚度矩阵。耗散势力方法考虑比例结构阻尼。由于盘偏心位置的后果,系统中存在陀螺仪组分。非线性轴承反应力包括在模型中,作为外力,并且在时域中解决了完整的方程系统,从而能够分析转子和轴承响应。最后,获得了完整系统的基本频率。

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