Natural Frequency Analysis of PZT Glide Heads During Contact

A. Y. Tsay, C. Ku, I. Shen, B. Marchon
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引用次数: 2

Abstract

The natural frequencies (NFs) and the corresponding mode shapes of a glide head with a piezoelectric transducer (PZT) mounted on its extended wing have been studied both analytically and experimentally. Finite element analysis results indicate that the extended wing reduces the NFs of the glide head substantially. The manufacturing tolerances of the slider and PZT as well as the PZT bonding location can have a significant effect on the NFs. As the glide head contacts the laser bump texture during the landing process, the NFs of the glide head increase slightly, probably because of the constraint provided by the stiffness of the bumps during the contact. The NFs calculated by finite element analysis show good agreement with the data obtained using two different experimental methods.
PZT滑动头接触时的固有频率分析
本文从分析和实验两方面研究了扩展翼上安装压电换能器的滑翔头的固有频率和相应的振型。有限元分析结果表明,扩展翼能显著降低滑翔头的NFs。滑块和PZT的制造公差以及PZT键合位置对NFs有显著影响。在着陆过程中,当滑翔头接触激光凹凸纹理时,滑翔头的NFs略有增加,这可能是由于接触过程中凹凸刚度提供的约束。有限元计算结果与两种不同实验方法的结果吻合较好。
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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