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Resonant frequency and hysteresis of a stack actuator made of single crystal (PMN-29PT) layers

机译:由单晶(PMN-29PT)层制成的堆叠执行器的谐振频率和磁滞

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In this study, we have presented the dynamic behavior of a piezoelectric stack actuator made of forty layers of single-crystal (PMN-29PT) with an area of 10 x 10 mm(2) and thickness of 1 mm. To conduct a dynamic test of the actuator, we built a test apparatus with dummy weights that was placed over the top of the actuator to measure the actuation displacement. The resonant frequencies of the actuator with and without the dummy weight were determined as the excitation frequencies where a significant increase in the actuation displacement could be observed. We also proposed an analytical multi-degree-of-freedom (MDOF) model of the actuator to analytically predict the resonant frequency. Finite element analyses were conducted to validate the analytically predicted and measured resonant frequencies. With no dummy weight, the resonant frequency of the actuator was measured at 730.00 Hz, which was 0.70% higher than the one calculated by the MDOF model and 0.10% smaller than that of the finite element model. With a dummy weight, the measured resonant frequency was lower than 730.00 Hz and close enough to those computed by the MDOF model and the finite element model. The hysteresis curves of the actuator at various frequencies indicated that the actuator might incur a small energy loss.
机译:在这项研究中,我们介绍了由四十层单晶(PMN-29PT)制成的压电堆栈致动器的动态行为,面积为10 x 10 mm(2),厚度为1 mm。为了对执行机构进行动态测试,我们构建了一个带有虚拟砝码的测试设备,将其放在执行机构的顶部以测量执行机构的位移。将具有和没有虚拟配重的致动器的谐振频率确定为激励频率,在该激励频率下可以观察到致动位移的显着增加。我们还提出了执行器的解析多自由度(MDOF)模型,以分析性地预测谐振频率。进行了有限元分析,以验证分析预测和测量的共振频率。在没有虚拟砝码的情况下,执行器的共振频率为730.00 Hz,比MDOF模型计算的共振频率高0.70%,比有限元模型的共振频率小0.10%。使用虚拟砝码时,测得的共振频率低于730.00 Hz,足够接近MDOF模型和有限元模型所计算的共振频率。执行器在各种频率下的磁滞曲线表明,执行器可能会产生少量能量损失。

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