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Wide-band piezoelectric resonance frequency energy harvester

机译:宽带压电谐振频率能量采集器

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Some of the piezoelectric devices work more efficiently around the resonance frequencies. Piezoelectric structures have the highest displacement and charge generation closer to the resonance conditions. In this study, a wide band energy harvester with a spiral metal plate was designed. Metal shim with various length were integrated with piezo ceramic rings in a spiral form. Each metal shim has its own resonance frequencies. Neighboring metal shim has also its own resonance frequency. Intriguingly, resonance frequency of each shim is close to each other to trigger each other vibration. With such a structure it will be possible to scavenge energy in vibrating structure with a wider frequency range. Resonance frequency of piezoelectric structures is depend on mass of piezoelectric ceramics and clamped metal shim geometry. Parametric studies were performed to investigate the optimal condition of such a structure.
机译:一些压电器件在谐振频率附近更有效地工作。压电结构在接近谐振条件时具有最高的位移和电荷产生。在这项研究中,设计了带有螺旋金属板的宽带能量收集器。各种长度的金属垫片与压电陶瓷环以螺旋形式集成在一起。每个金属垫片都有自己的共振频率。相邻的金属垫片也有其自己的共振频率。有趣的是,每个垫片的共振频率彼此接近,从而相互触发振动。采用这种结构,将有可能在具有较宽频率范围的振动结构中清除能量。压电结构的共振频率取决于压电陶瓷的质量和夹紧的金属垫片的几何形状。进行了参数研究以研究这种结构的最佳条件。

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