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Modal Analysis for a Rod-Fastened Rotor considering Contact Effect Based on Double Fractal Model

机译:基于双重分形模型的接触效应考虑杆固定转子的模态分析

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摘要

The rod-fastened rotor is the core component of the gas turbine. It comprises several discs and tie rods. The flexural stiffness of the contact interface is the key factor for rotordynamic analysis. The contact interfaces of the discs are usually manufactured by grinding. The measured contour curve of the contact interfaces of an experimental rod-fastened rotor is analyzed by the structural function method, which shows that the contact interfaces can be well described by the double fractal model with fractal dimensions D1 and D2 and the fractal roughness parameters G1 and G2. The Hertz model is used to analyze the contact of the single asperity on the contact interface. On this basis, the flexural stiffness of the contact interface considering the pretightening force and the bending moment is derived. Modal frequencies of the experimental rod-fastened rotor under different pretightening forces and the bending moment (caused by gravity) are obtained by three-dimensional finite element analysis and experimental modal tests. It is observed that the modal frequencies increase with the nominal pressure of the contact interface, and the experimental results are consistent with the calculated results.
机译:杆紧固转子是燃气轮机的芯部件。它包括多个圆盘和领带杆。接触界面的弯曲刚度是旋转动力学分析的关键因素。盘的接触界面通常通过研磨而制造。通过结构函数方法分析实验杆紧固转子的接触界面的测量轮廓曲线,这表明可以通过分形尺寸D1和D2和分形粗糙度参数G1的双分形模型很好地描述接触界面和分形粗糙度参数G1和G2。赫兹模型用于分析单个粗糙度对接触界面的接触。在此基础上,考虑到预防力和弯矩的接触界面的弯曲刚度。通过三维有限元分析和实验模态试验,获得了在不同的性能和弯曲力矩下的实验杆固定转子的模频频率和弯曲力矩(引起的重力)。观察到,模态频率随着接触界面的标称压力而增加,实验结果与计算结果一致。

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