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Experimental and theoretical studies of PZT glide head vibration

机译:PZT滑行头振动的实验与理论研究

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This paper studies the natural frequencies of a PZT glide head through calibrated experiments and a finite element analysis (FEA). In the experimental studies, the PZT served as an actuator exciting the glide head from 100 kHz to 1.3 MHz, and a laser Doppler vibrometer (LDV) measured the displacement of the glide head at the inner or outer rail. The natural frequencies were measured through PZT impedance and frequency response functions of PZT to LDV. In FEA, the slider, PZT, and glue (epoxy) were meshed by brick elements. Natural frequencies predicted from FEA agree well with the experimental results with a 5% difference. Therefore, modeling of the epoxy layer is critical in predicting the natural frequencies of PZT glide heads.
机译:本文通过校准实验和有限元分析(FEA)研究了PZT滑行头的固有频率。在实验研究中,PZT用作从100 kHz到1.3 MHz激励滑行头的致动器,并且激光多普勒振动计(LDV)测量了滑行头在内轨或外轨处的位移。通过PZT阻抗和PZT对LDV的频率响应函数来测量固有频率。在FEA中,滑块,PZT和胶水(环氧树脂)由砖块元素划分网格。 FEA预测的固有频率与实验结果非常吻合,相差5%。因此,环氧层的建模对于预测PZT滑行头的固有频率至关重要。

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