Dynamic characteristics of a HDD spindle system due to imperfect roundness of shaft

G. Sang, K. Koak, H. W. Kim, K. Jung
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Abstract

This research proposes a modified Reynolds equation for the coupled journal and thrust FDBs to include the variable film thickness due to the imperfect roundness of a rotating shaft. Finite element method is used to solve the Reynolds equation to determine pressure, reaction force and friction torque. The dynamic behavior of a HDD spindle system is determined by solving the equations of a motion in six degrees of freedom with the Runge-Kutta method. This research shows that the imperfect roundness of the shaft increases the nonlinearity of FDBs. It generates the harmonics of the bearing reaction force and the displacement of the HDD spindle system which correspond to groove number ±1 even in the case of stationary grooved FDB.
轴不完全圆度对HDD主轴系统动态特性的影响
本文提出了一个修正的轴颈-推力耦合fdb的Reynolds方程,该方程考虑了由于转轴不完全圆度而引起的膜厚变化。采用有限元法求解雷诺方程,确定压力、反作用力和摩擦力矩。采用龙格-库塔法求解六自由度运动方程,确定了HDD主轴系统的动力学特性。研究表明,轴的不完全圆度增加了fdb的非线性。在固定槽型FDB的情况下,也会产生对应于槽数±1的轴承反力和主轴系统位移的谐波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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