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Modal simulation of gearbox vibration with experimental correlation

机译:齿轮箱振动的模态仿真与实验相关

摘要

A newly developed global dynamic model was used to simulate the dynamics of a gear noise rig at NASA Lewis Research Center. Experimental results from the test rig were used to verify the analytical model. In this global dynamic model, the number of degrees of freedom of the system are reduced by transforming the system equations of motion into modal coordinates. The vibration of the individual gear-shaft system are coupled through the gear mesh forces. A three-dimensional, axial-lateral coupled, bearing model was used to couple the casing structural vibration to the gear-rotor dynamics. The coupled system of modal equations is solved to predict the resulting vibration at several locations on the test rig. Experimental vibration data was compared to the predictions of the global dynamic model. There is excellent agreement between the vibration results from analysis and experiment.
机译:美国国家航空航天局刘易斯研究中心使用一种新开发的全局动力学模型来模拟齿轮噪声装置的动力学。测试台的实验结果用于验证分析模型。在此全局动力学模型中,通过将系统运动方程式转换为模态坐标,可以减少系统的自由度。各个齿轮轴系统的振动通过齿轮啮合力耦合。使用三维轴向-轴向耦合轴承模型将壳体结构振动与齿轮-转子动力学耦合。求解了模态方程的耦合系统,以预测在试验台上多个位置产生的振动。将实验振动数据与全局动态模型的预测进行了比较。分析和实验的振动结果之间有着极好的一致性。

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