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Damping Behavior of Semi-passive Vibration Control using Shunted Piezoelectric Materials

机译:并联压电材料半被动振动控制的阻尼特性

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摘要

Piezoelectric transducers in conjunction with appropriate electric networks can be used as mechanical energy dissipation devices. Semi-passive vibration control devices using nonlinear methods have experienced significant development in recent years, due to their performance and advantages compared with passive and active techniques. More precisely, synchronized switch damping (SSD) and derived techniques, which have been developed in the field of piezoelectric damping, lead to a very good trade-off between simplicity, required power supply, and performance. This technique consists of nonlinear processing of the piezoelement voltage which induces an increase in electromechanical energy conversion. The control law consists of triggering the inverting switch on each extremum of voltage (or displacement). The purpose of this study is the experimental observation of piezoelement damping sensitivity to variations of amplitude and frequency of excitation force. In addition, the effect of the size of piezoelement area on the vibration damping in high and low values of these parameters has been studied using SSDI method. The proposed method for switching sequence is based on statistical evaluation of the structural deflection.
机译:压电换能器与适当的电网结合可以用作机械耗能设备。与被动和主动技术相比,由于其性能和优势,使用非线性方法的半被动振动控制设备近年来取得了重大发展。更准确地说,在压电阻尼领域开发的同步开关阻尼(SSD)和衍生技术可在简单性,所需电源和性能之间取得很好的折衷。该技术包括对压电元件电压的非线性处理,这会引起机电能量转换的增加。控制律包括在每个极值电压(或位移)上触发反相开关。这项研究的目的是实验观察压电元件的阻尼灵敏度对激振力的幅度和频率的变化。此外,使用SSDI方法研究了压电元件区域的大小对这些参数的高值和低值对振动阻尼的影响。所提出的切换顺序的方法是基于结构变形的统计评估。

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