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Modal Analysis of a Thick-Disk Rotor with Interference Fit Using Finite Element Method

机译:厚盘转子过盈配合的有限元模态分析

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This paper is concerned with the modal analysis of a thick-disk rotor, which consists of an elastic shaft with a rigid thick disk assembled by interference fit, and the width of the thick disk is not negligible. Firstly, the friction moment on the contact surface of disk and shaft is deduced in terms of elastic theory, and a new enhanced coefficient of bending stiffness of assembly body is proposed and calculated for the first time. Secondly, the effect of the width of thick disk on diametrical moment of inertia, as well as the enhanced coefficient of bending stiffness of interference-fit part between disk and shaft, is included in the motion equations of thick-disk rotor, which are established based on finite element method, and the natural frequencies of rotor are obtained by solving the motion equations. Then the modal analysis is performed to get the natural frequencies in ANSYS Workbench, in which the friction coefficient and interference fit are set to be the same as those of the finite element calculation method. At last the modal experiment is done to verify the accuracy of calculation and simulation. The results show that the calculation values using enhanced stiffness of assembly part are in good agreement with those of ANSYS Workbench and experiment, and the percent errors of the first natural frequency and the second natural frequency are down to about 0.32% and 0.83%, respectively.
机译:本文涉及厚盘转子的模态分析,该转子由一个弹性轴和一个刚性厚盘通过过盈配合组装而成,厚盘的宽度不可忽略。首先,根据弹性理论推导了圆盘与轴接触面的摩擦力矩,并首次提出并计算了新的提高的装配体抗弯刚度系数。其次,厚盘转子的运动方程中包括了厚盘宽度对径向惯性矩的影响,以及盘与轴之间过盈配合部分的抗弯刚度系数的提高,从而建立了厚盘转子的运动方程。基于有限元方法,并通过求解运动方程获得转子的固有频率。然后进行模态分析,以在ANSYS Workbench中获得固有频率,其中将摩擦系数和过盈配合设置为与有限元计算方法相同。最后进行模态实验以验证计算和仿真的准确性。结果表明,采用提高装配零件刚度的计算值与ANSYS Workbench和实验结果吻合良好,第一固有频率和第二固有频率的百分比误差分别降至约0.32%和0.83%。 。

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