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PHYSICAL PARAMETER IDENTIFICATION OF A METAL RUBBER ANNULUS STRUCTURE BASED ON MODEL UPDATING

机译:基于模型更新的金属橡胶环结构的物理参数识别

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The metal rubber, which is designed to be annulus for the support of flexible rotor and characterized by favorable damping features, requires accurate parametric model for great application prospect. With the integration of simulation and experiments, a finite element model updating procedure of metal rubber annuluses structure was presented based on vibration test of metal-rubber-annulus-supported bearing system. Experiment modal analysis (EMA) was conducted while the simulation part of this study achieved an establishment of the FE model of the annulus structure with the corresponding parameters (stiffness, damping, etc.) in NASTRAN. Comparisons of the identified modal parameters obtained from updating and test results were performed. Good correlations were found which demonstrate physical parameters obtained are reliable with enough modeling accuracy.
机译:金属橡胶设计为柔性转子的支撑并以良好的阻尼特征为特征,需要精确参数模型,以实现伟大的应用前景。随着模拟和实验的集成,基于金属 - 橡胶环支撑轴承系统的振动试验提出了金属橡胶环形结构的有限元模型更新程序。进行实验模态分析(EMA),而该研究的仿真部分达到了Nastran中的相应参数(刚度,阻尼等)的环形结构的Fe模型。执行从更新和测试结果获得的识别的模态参数的比较。发现良好的相关性,证明所获得的物理参数可靠,具有足够的建模精度。

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