积分挤压薄膜阻尼器的动态特性系数研究

Machines Pub Date : 2024-04-20 DOI:10.3390/machines12040274
Wei Yan, Jinlong Lu, Jiabao Pan, Jinduo Liu, Chengming Fuyang, Dongdong Ye
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引用次数: 0

摘要

整体挤压膜阻尼器(ISFD)是在传统挤压膜阻尼器(SFD)基础上出现的一种新型结构。由于 ISFD 中的油膜是无环流的分段式结构,因此在很大程度上改善了油膜力的非线性。ISFD 的动态特性系数与其阻尼性能关系密切。本研究通过数值分析和实验验证技术对 ISFD 的动态特性参数进行了研究,以考察其动态特性并揭示其阻尼机理。建立了 ISFD 固体和流体分析模型,并完成了计算流体动力学(CFD)和机械性能分析。机械性能分析揭示了激励条件下作用在 ISFD S 型弹性体上的力,而 CFD 分析则研究了内部油膜的流动特性。研究发现 ISFD 具有良好的线性阻尼和刚度特性,并获得了 ISFD 阻尼和刚度系数的数值分析值。通过构建双向激励试验台,确定了 ISFD 的刚度系数和阻尼系数的实验值。这些数值与数值分析的结果非常吻合,证实了 ISFD 数值分析结论的准确性。
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Research on Dynamic Characteristic Coefficients of Integral Squeeze Film Damper
Integral squeeze film damper (ISFD) is a new type of structure that appeared on the basis of traditional squeeze film damper (SFD). Since the oil film in ISFD is a segmented structure without annular flow, the nonlinearity of the oil film force has been improved to a great extent. The dynamic characteristic coefficients of ISFD have a close relationship with its damping performance. This work investigates and studies the dynamic characteristic parameters of ISFD by means of numerical analysis and experimental validation techniques in order to examine the dynamic features and unveil the damping mechanism. The ISFD solid and fluid analysis models are created, and the computational fluid dynamics (CFD) and mechanical performance analyses are completed. The force acting on the ISFD’s S-type elastomer under excitation conditions is revealed in the mechanical property analysis, and the flow characteristics of the internal oil film are investigated in the CFD analysis. It is discovered that the ISFD has good linear damping and stiffness characteristics, and numerical analytical values for the ISFD’s damping and stiffness coefficients are obtained. By constructing a bi-directional excitation test rig, the experimental values of the ISFD stiffness coefficient and damping coefficient are determined. These values are in close agreement with the results of the numerical analysis, confirming the accuracy of the ISFD’s numerical analysis conclusions.
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