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A novel test rig for the dynamic characterization of large size tilting pad journal bearings

机译:一种新型试验台,用于大尺寸倾斜垫轴颈轴承的动态特性

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The present work concerns the realization of a test bench for the dynamic characterization of high performance tilting pad journal bearings, within a collaboration between the Department of Civil and Industrial Engineering of Pisa, GE Oil&Gas and AM Testing. The objective is to cover journal diameters of interest of GE, from 150 to 300 mm, with peripheral speeds up to 150 m/s, static load up to 270 kN, dynamic loads up to 30 kN and frequencies up to 350 Hz, performances that make the apparatus very competitive worldwide. The adopted configuration has the test article (TA) floating at the mid-span of a rotor supported by two rolling bearings. The TA is statically loaded by a hydraulic actuator and excited dynamically by two orthogonal hydraulic actuators. Construction was recently concluded and preliminary tests are under way. In order to assess in advance the possible accuracy of the tests, a dynamic lumped parameter model of the test bench was developed to perform virtual experiments, including several possible sources of experimental errors and uncertainties. The model was implemented using reduced stiffness and mass matrices obtained from Finite Element Analysis by Component Modal Synthesis.
机译:目前的工作涉及实现高性能倾斜垫期刊轴承动态特征的测试台,在比萨,GE油气和煤气和AM测试中的民营工程系之间的合作范围内。目的是覆盖GE的兴趣期刊直径,从150到300毫米,外围速度高达150米/秒,静电负载高达270 kN,动态负载高达30 kN和频率高达350 Hz,表演使设备非常竞争全球。所采用的配置具有漂浮在由两个滚动轴承支撑的转子的中间跨度的测试制品(TA)。 TA由液压致动器静态地装载,并通过两个正交的液压致动器动态激发。最近施工得出结论,并正在进行初步测试。为了提前评估测试的可能准确性,开发了测试台的动态集成参数模型来执行虚拟实验,包括几种可能的实验误差和不确定性的源。通过组分模态合成从有限元分析获得的减小的刚度和质量矩阵来实现该模型。

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