非同心挤压薄膜阻尼器的仿真分析

Jiaqi Dong, A. Bazhanov
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摘要

挤压膜阻尼器是为旋转电机提供额外阻尼的部件。一般来说,为了使挤压膜阻尼器达到最佳效果,需要适当增加阻尼值、降低刚度并设置合理的偏心率。在设计挤压膜阻尼器的过程中,我们可以应用 COMSOL 软件的转子动力学模块对其进行建模和仿真,从而达到较好的仿真效果,为后续产品的开发和设计奠定基础。在 COMSOL 软件中,为了简化转子部件的建模,我们通常根据阻尼系数对挤压膜阻尼器进行建模。该模型可计算出短挤压膜阻尼器的阻尼系数,并将计算结果与分析计算值进行比较。此外,阻尼系数还取决于阻尼器中轴颈的位置,即偏心率的大小。本文通过分析不同偏心率下的无量纲阻尼系数、轴承刚度、轴颈位移和流体载荷,并绘制挤压膜阻尼器的流体压力分布和平均油膜流速图,找出了最合适的偏心率范围和阻尼器的易损坏部位,为挤压膜阻尼器的实际设计提供了重要参考。
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Simulation Analysis of Non-concentric Squeeze Film Damper
Squeeze film dampers are components that provide additional damping for rotating motors. In general, in order to achieve the best results of the squeeze film damper, it is necessary to appropriately increase the damping value, reduce the stiffness and set a reasonable eccentricity. In the process of designing the squeeze film damper, we can apply the rotor dynamics module of COMSOL software to model and simulate it, so as to achieve better simulation results and lay a foundation for the subsequent development and design of the product. In COMSOL software, in order to simplify the modeling of rotor components, we usually model squeeze film dampers based on the damping coefficient. The model calculates the damping coefficient for a short squeeze film damper and compares the results with the analytically calculated values. In addition, the damping coefficient depends on the position of the journal in the damper, i.e., the magnitude of the eccentricity. In this paper, by analyzing the dimensionless damping coefficient, bearing stiffness, journal displacement, and fluid load at different eccentricity, and plotting the fluid pressure distribution and the average oil film flow rate of the squeeze film damper, we can find the most suitable range of eccentricity and the damage-prone part of the damper, which can provide an important reference for the actual design of the squeeze film damper.
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