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Control of Structural Vibration Using Shunt Piezoelectric Materials

机译:用分流压电材料控制结构振动

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In this study, structural vibration control using semi-active shunt piezoelectric damping circuits is presented. A piezoelectric patch with an electrical shunt circuit is bonded to a base structure. When the structure vibrates, the piezoelectric patch strains and transforms the mechanical energy of the structure into electrical energy, which can be effectively dissipated by the shunt circuit. Hence, the shunt circuit acts as a means of extracting mechanical energy from the base structure. In this study, a pulse-switching circuit is imposed as the semi-active shunt piezoelectric damping to reduce the structural vibration. The switch-law for the pulse-switching circuit is discussed in detail, and the detailed numerical calculations are given and discussed. It is found that the pulse-switching circuit is more stable than passive piezoelectric circuit (such as RL series circuit) with regard to structural stiffness variations.
机译:在该研究中,提出了使用半主动分流压电阻尼电路的结构振动控制。具有电分流电路的压电贴片粘合到基部结构上。当结构振动时,压电贴片株并将结构的机械能转变为电能,这可以通过分流回路有效地消散。因此,分流电路用作从基座结构提取机械能的手段。在该研究中,脉冲切换电路被施加为半主动分流压电阻尼以减小结构振动。详细讨论了脉冲切换电路的交换定律,并给出并讨论了详细的数值计算。发现,关于结构刚度变化,脉冲切换电路比无源压电电路(例如RL系列电路)更稳定。

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