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Vibration of rotating-shaft HDD spindle motors with flexible stationary parts

机译:带有固定部件的旋转轴HDD主轴电机的振动

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The purpose of this paper is to develop a mathematical model that predicts forced vibration of HDD spindles with flexible stationary parts. The model assumes a rotating-shaft spindle design. The mathematical model consists of three parts: a rotating part, a stationary part, and bearings. The rotating part includes a flexible hub, a flexible shaft press-fit into the hub, and N elastic disks mounted on the hub. The stationary part can include motor bracket (stator), base casting, and top cover. The bearings under consideration can be ball bearings or fluid-dynamic bearings (FDB). The rotating disks are modeled through the classical plate theory. The rotating part (except the disks) and the stationary part are modeled through finite element analyses (FEA). With mode shapes and natural frequencies obtained from FEA, the kinetic and potential energies of the rotating and stationary parts are formulated and discretized. Finally, use of Lagrange equation results in the equations of motion.
机译:本文的目的是建立一个数学模型,以预测具有柔性固定部件的HDD主轴的强制振动。该模型采用旋转轴主轴设计。数学模型由三部分组成:旋转部分,固定部分和轴承。旋转部件包括挠性毂,压配合到毂中的挠性轴以及安装在毂上的N个弹性盘。固定部分可以包括电动机支架(定子),底座铸件和顶盖。所考虑的轴承可以是球轴承或流体动力轴承(FDB)。旋转盘是通过经典板理论建模的。旋转部分(磁盘除外)和静止部分通过有限元分析(FEA)进行建模。利用从FEA获得的模态形状和固有频率,可以对旋转和静止零件的动能和势能进行公式化和离散化。最后,使用拉格朗日方程产生运动方程。

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