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Extraction of Bearing Coefficients of Fluid-Dynamic Bearing Spindle Motors Using a Proof Mass and a Hammer—A Refined Approach

机译:用证明质量和锤子提取流体动力轴承主轴电动机的轴承系数—一种改进的方法

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In this paper, we report significant theoretical and experimental improvements over the method developed by Shen (“Estimating bearing coefficients of fluid-dynamic bearing spindle motors: A theoretical treatment and feasibility study” in IEEE Trans. on Magnetics, vol. 47, no. 7, 2011) to extract bearing coefficients of a fluid-dynamic bearing (FDB) spindle motor used in hard disk drives (HDD). On the theoretical side, many assumptions made in the prior mathematical model are removed. For example, effects of radial displacements, inertia, and gyroscopic moments are now accounted for. Governing equations to extract the bearing coefficients are exact thus enhancing extraction accuracy. Besides, two new schemes are developed to extract the bearing coefficients from the governing equations. On the experimental side, we use a dual-beam differential laser Doppler vibrometer (LDV) to directly measure angular displacements, thus significantly reducing measurement uncertainties. Radial displacements are also measured to increase accuracy of extracted bearing coefficients. With these improvements, three rounds of experiments were conducted to extract in-line stiffness, cross stiffness and damping coefficients of the lower radial bearing of a 15$thinspace$ 000 r/min spindle motor.
机译:在本文中,我们报告了在IEEE Trans。on Magnetics,第一卷,Shen (“估计流体动力轴承主轴电机的轴承系数:理论处理和可行性研究”)开发的方法方面的重大理论和实验改进。 47,第7号,2011年)提取硬盘驱动器(HDD)中使用的流体动力轴承(FDB)主轴电机的轴承系数。从理论上讲,可以删除先前数学模型中做出的许多假设。例如,现在考虑了径向位移,惯性和陀螺力矩的影响。提取轴承系数的控制方程式非常精确,从而提高了提取精度。此外,还开发了两种新的方案来从控制方程中提取轴承系数。在实验方面,我们使用双光束差分激光多普勒振动计(LDV)直接测量角位移,从而显着降低了测量不确定度。还测量径向位移,以提高提取的轴承系数的精度。通过这些改进,进行了三轮实验,以提取15 $ thinspace $ 的轴承的轴向刚度,横向刚度和下径向轴承的阻尼系数。 / tex> 000 r / min主轴电机。

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