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PERFORMANCE CHARACTERISTICS OF METAL MESH FOIL BEARINGS: PREDICTIONS VS. MEASUREMENTS

机译:金属网纹轴承的性能特征:预测与。测量

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Proven low-cost gas bearing technologies are sought to enable more compact rotating machinery products with extended maintenance intervals. The paper presents an analysis for predicting the static and dynamic forced performance characteristics of metal mesh foil bearings (MMFBs) which comprise of a top foil supported on a layer of metal mesh of certain compactness. The analysis couples a finite element model of the top foil and underspring support with the gas film Reynolds equation. Comparison of predictions against laboratory measurements with two bearings aims to validate the analysis. The predicted drag friction factor in one bearing (L=Z)=28.00 mm) during full film operation is just f~ 0.03 at ~ 50 krpm, agreeing well with measurements at increasing applied loads. The predictions further elucidate the effect of the applied load and rotor speed on the bearing minimum film thickness, journal eccentricity and attitude angle. For a second bearing (L=38.0 mm, D=36.5 mm), predicted bearing force coefficients show magnitudes comparable with the measurements, with less than 20% difference, in the 250-350 Hz excitation frequency range. While the predicted direct stiffness coefficients are rather constant, the experimental force coefficients increase with frequency (max. 400 Hz), due mainly to the increasing amplitudes of dynamic force applied to excite the bearing with a set amplitude of motion. The analysis under predicts the direct damping coefficients at high frequencies (>300 Hz). The cross-coupled stiffness and damping coefficients are typically lower (< 40%) than the direct ones. The bearings operated stable at all speeds without any sub synchronous whirl. The reasonable agreement of the predictions with the available test data promote the better design and further development of MMFB supported rotating machinery.
机译:探讨了低成本的气体轴承技术,并寻求实现更紧凑的旋转机械产品,延长维护间隔。本文介绍了预测金属网箔轴承(MMFB)的静态和动态强制性能特性的分析,其包括支撑在一层金属滤网上的顶部箔的覆盖物。分析耦合着顶部箔的有限元模型,并利用气膜雷诺方程来耦合底部的支撑。两种轴承对实验室测量的预测比较旨在验证分析。在全膜操作期间,一个轴承(L = Z)= 28.00mm的预测的阻力摩擦系数仅为〜50kRPM的F〜0.03,在增加施加的载荷时易于测量。预测进一步阐明了施加的负载和转子速度对轴承最小膜厚度,轴颈偏心和姿态角度的影响。对于第二轴承(L = 38.0mm,d = 36.5mm),预测的承载力系数显示出与测量相当的大小,在250-350 Hz励磁频率范围内差异小于20%。虽然预测的直接刚度系数相当恒定,但实验力系数随频率(最大值400Hz)而增加,主要是由于施加具有振幅的动态力的增加的动态力幅度增加。下的分析预测高频(> 300Hz)处的直接阻尼系数。交叉耦合刚度和阻尼系数通常比直接较低(<40%)。轴承在所有速度下操作稳定,没有任何亚同步旋转。预测与可用测试数据的合理协议促进了MMFB支持的旋转机械的更好的设计和进一步发展。

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