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Flexoelectric energy harvesters based on Timoshenko laminated beam theory

机译:基于季莫申科层压梁理论的柔性电能采集器

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Different from piezoelectricity which is restricted to certain materials, flexoelectricity is a universal electromechanical coupling in all dielectrics. In this work, mechanical energy harvester models were developed based on Timoshenko laminated beam theory, in which the flexoelectric and piezoelectric mechanisms were discussed. For a three-layered energy harvester in parallel configuration, the mechanical vibration energy can be converted into electrical energy due to flexoelectricity, and for the three-layered energy harvester in series configuration, the energy conversion is enhanced by the flexoelectricity. Resonance frequency shifts were observed in the calculations due to flexoelectricity and external circuit resistance. It is found that the electromechanical coupling displayed from the electrical responses versus resonance frequency and resistance. The energy conversion for the three-layered energy harvester system was found to be increased with the decrease in the laminated beam thickness. The energy conversion calculated for different numbers of layers also indicates that laminated energy harvester systems excel single-layered energy harvesters. This work therefore might help in designing flexoelectricity-based energy harvesters.
机译:与仅限于某些材料的压电不同,柔电是所有电介质中的通用机电耦合。在这项工作中,基于Timoshenko叠层梁理论开发了机械式能量收集器模型,其中讨论了压电和压电机制。对于并联配置的三层能量采集器,机械振动能可以通过挠性电转换为电能,对于串联配置的三层能量采集器,挠性电可以增强能量转换。由于挠性电和外部电路电阻,在计算中观察到共振频率偏移。从电响应与谐振频率和电阻的关系中发现了机电耦合。发现三层能量收集器系统的能量转换随着层压梁厚度的减小而增加。针对不同层数计算出的能量转换还表明,层压式能量收集器系统优于单层式能量收集器。因此,这项工作可能有助于设计基于柔性电的能量收集器。

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