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Finite element analysis of unbalance response of high-speed polygon mirror scanner motor considering the flexibility of the structure

机译:考虑结构柔性的高速多面镜扫描仪电机不平衡响应的有限元分析

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This paper presents the finite element method and the mode superposition method to analyze the unbalance response of a high speed polygon mirror scanner motor supported by sintered bearing and flexible supporting structures. Finite element equations of each component of the polygon mirror scanner motor and the flexible supporting structures are consistently derived by satisfying the geometric compatibility in the internal boundary between each component. The rotating polygon mirror is modeled by annular sector element, and its rigid body motion is also considered. The rotating components except for the polygon mirror are modeled by Timoshenko beam element including the gyroscopic effect. The flexible supporting structures are modeled by using a 4-node tetrahedron element and 4-node shell element with rotational degrees of freedom. The rigid link constraints are imposed at the interface between sleeve and sintered bearing to describe the physical motion at this interface. A global matrix equation obtained by assembling the finite element equations of each substructure is transformed to a state-space matrix-vector equation, and both damped natural frequencies and modal damping ratios are calculated by solving the associated eigenvalue problem by using the restarted Arnoldi iteration method. Unbalance responses are calculated by superposing the eigenvalues and eigenvectors of the free vibration analysis. The validity of the proposed method is verified by comparing the simulated unbalance response with the experimental results. This research also shows that the flexibility of supporting structures plays an important role in determining the unbalance response of the polygon mirror scanner motor.
机译:本文提出了一种有限元法和模式叠加法来分析由烧结轴承和柔性支撑结构支撑的高速多面镜扫描仪电机的不平衡响应。通过满足每个组件之间的内部边界的几何兼容性,可以一致地导出多面镜扫描仪电机的每个组件和柔性支撑结构的有限元方程。旋转多面镜由环形扇形单元建模,并且还考虑了其​​刚体运动。除多面镜以外的旋转分量均由Timoshenko梁元素(包括陀螺效应)建模。通过使用具有旋转自由度的4节点四面体单元和4节点壳单元对柔性支撑结构进行建模。刚性连接约束施加在套筒和烧结轴承之间的界面处,以描述该界面处的物理运动。通过组装每个子结构的有限元方程获得的全局矩阵方程被转换为状态空间矩阵矢量方程,并通过使用重新启动的Arnoldi迭代方法求解相关的特征值问题,从而计算了阻尼固有频率和模态阻尼比。通过叠加自由振动分析的特征值和特征向量来计算不平衡响应。通过将模拟的不平衡响应与实验结果进行比较,验证了该方法的有效性。这项研究还表明,支撑结构的灵活性在确定多面镜扫描仪电机的不平衡响应中起着重要作用。

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