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Study on Dynamic Characteristics of Aerostatic Bearing with Elastic Equalizing Pressure Groove

机译:弹性均压槽静压轴承动力学特性研究

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Microvibration has an important influence on the dynamic performance of aerostatic bearings. Dynamic stiffness and equivalent damping coefficient are the main indexes to evaluate the dynamic characteristics of the aerostatic bearing. In order to study the dynamic characteristics of a new type of aerostatic bearing with the elastic equalizing pressure groove (EEPG), the dynamic characteristics of the new type of bearing are studied by theoretical calculation and experiment. First, the dynamic gas-solid coupling control equation is established. Then, the steady term and the perturbation term are decomposed by the perturbation method. By solving the coupling model, the dynamic characteristics of the bearing are calculated and analyzed. The calculation results show that the perturbation frequency has a significant effect on the dynamic stiffness and equivalent damping coefficient of the aerostatic bearing with EEPG. The dynamic stiffness increases with the increase of frequency, and the equivalent damping coefficient decreases with the increase of frequency. The experimental results are basically the same with the theoretical results, which effectively verify the correctness of the theoretical analysis.
机译:微振动对空气静压轴承的动态性能有重要影响。动态刚度和等效阻尼系数是评估静压轴承动态特性的主要指标。为了研究新型带有弹性均压槽(EEPG)的空气静压轴承的动态特性,通过理论计算和实验研究了这种新型轴承的动态特性。首先,建立了动态​​气固耦合控制方程。然后,通过摄动方法分解稳态项和摄动项。通过求解耦合模型,可以计算和分析轴承的动态特性。计算结果表明,扰动频率对带有EEPG的静压轴承的动态刚度和等效阻尼系数有显着影响。动态刚度随频率的增加而增加,等效阻尼系数随频率的增加而减小。实验结果与理论结果基本一致,有效地验证了理论分析的正确性。

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