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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Identification of Dynamic Force Coefficients for a 110 MM Compliantly Damped Hybrid Gas Bearing
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Experimental Identification of Dynamic Force Coefficients for a 110 MM Compliantly Damped Hybrid Gas Bearing

机译:110毫米全阻尼混合气体轴承动态力系数的实验辨识

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Compliant hybrid gas bearings (HGBs) combine key enabling features from both fixed geometry externally pressurized gas bearings and compliant foil bearings. The compliant hybrid bearing relies on both hydrostatic and hydrodynamic film pressures to generate load capacity and stiffness to the rotor system, while providing damping through integrally mounted metal mesh bearing support dampers. This paper presents experimentally identified force coefficients for a 110 mm compliantly damped gas bearing using a controlled-motion test rig. Test parameters include hydrostatic inlet pressure, excitation frequency, and rotor speed. The experiments were structured to evaluate the feasibility of implementing these bearings in large size turbomachinery. Dynamic test results indicate weak dependency of equivalent direct stiffness coefficients to most test parameters except for frequency and speed, where higher speeds and excitation frequency decreased equivalent bearing stiffness values. The bearing system equivalent direct damping was negatively impacted by increased inlet pressure and excitation frequency, while the cross-coupled force coefficients showed values an order of magnitude lower than the direct coefficients. The experiments also include orbital excitations to simulate unbalance response representative of a target machine while synchronously traversing a critical speed. The results indicate the gas bearing can accommodate vibration levels larger than the set bore clearance while maintaining satisfactory damping levels.
机译:兼容的混合气体轴承(HGB)结合了固定几何形状的外部加压气体轴承和兼容的箔片轴承的关键启用功能。柔顺混合轴承依靠静液压和动液压膜压力来产生转子系统的负载能力和刚度,同时通过整体安装的金属网轴承支撑阻尼器提供阻尼。本文介绍了使用受控运动试验装置对110 mm顺应阻尼气体轴承进行实验确定的力系数。测试参数包括静液压入口压力,励磁频率和转子速度。实验的结构旨在评估在大型涡轮机械中实施这些轴承的可行性。动态测试结果表明,等效直接刚度系数对大多数测试参数的依赖性较弱,但频率和速度除外,其中较高的速度和励磁频率会降低等效轴承刚度值。轴承系统的等效直接阻尼受到入口压力和激励频率增加的负面影响,而交叉耦合力系数的值则比直接系数低一个数量级。实验还包括轨道激励,以模拟代表目标机器的不平衡响应,同时同步穿越临界速度。结果表明,气体轴承可以承受大于设定孔间隙的振动水平,同时保持令人满意的阻尼水平。

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