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Commissioning of a Novel Test Apparatus for the Identification of the Dynamic Coefficients of Large Tilting Pad Journal Bearings

机译:用于识别大型倾斜垫轴颈轴承动态系数的新型测试装置

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This paper describes the commissioning of a novel test bench for the static and dynamic characterization of large tilting pad journal bearings, realized within a collaboration of the Department of Civil and Industrial Engineering of the University of Pisa, BHGE and AM Testing. The adopted test bench configuration has the test article (TA) floating at the mid-span of a rotor supported by two rolling bearings. The TA is statically loaded vertically upwards by a hydraulic actuator and excited dynamically by two orthogonal hydraulic actuators with multiple frequency sinusoidal forces. The test rig is capable of testing bearings with a diameter from 150 to 300 mm. It includes very complex mechanical, hydraulic, electrical and electronic components, and needs, for the whole plant, about 1 MW of electric power. The commissioning of the testing system involved several aspects and presented various issues. This work focuses on measuring systems and data acquisition of high-frequency data (forces, accelerations and relative displacements) and on data processing for the identification of the bearing dynamic coefficients. The identification procedure is based on the linearity assumption and the principle of superposition, operating in the frequency domain with the fast Fourier transforms of the applied forces and displacement signals. First results, referred to a 4-pad bearing, are in satisfactory agreement with theoretical ones.
机译:本文介绍了大型倾斜垫期刊轴承静态和动态特征的新型测试台的调试,实现了比萨大学的民营工程系的合作,Bhge和AM测试。所采用的测试台面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)。通过液压致动器垂直地垂直地装载TA,并由具有多个频率正弦力的两个正交液压致动器动态地激发。试验台能够测试直径为150至300mm的轴承。它包括非常复杂的机械,液压,电气和电子元件,并需要为整个厂房提供约1兆瓦的电力。测试系统的调试涉及多个方面并提出了各种问题。这项工作侧重于测量系统和数据采集高频数据(力,加速度和相对位移)以及用于识别轴承动态系数的数据处理。识别过程基于线性假设和叠加原理,在频域中操作,其中施加力的快速傅里叶变换和位移信号。第一个结果,提到了4垫轴承,与理论上的令人满意的协议。

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