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Energy harvesting from underwater torsional vibrations of a patterned ionic polymer metal composite

机译:图案化离子聚合物金属复合材料从水下扭转振动中收集能量

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In this paper, we study underwater energy harvesting from torsional vibrations of an ionic polymer metal composite (IPMC) with patterned electrodes. We focus on harmonic base excitation of a centimeter-size IPMC, which is modeled as a slender beam with thin cross-section vibrating in a viscous fluid. Large-amplitude torsional vibrations are described using a complex hydrodynamic function, which accounts for added mass and nonlinear hydrodynamic damping from the surrounding fluid. A linear black box model is utilized to predict the IPMC electrical response as a function of the total twist angle. Model parameters are identified from in-air transient response, underwater steady-state vibrations, and electrical discharge experiments. The resulting electromechanical model allows for predicting energy harvesting from the IPMC as a function of the shunting resistance and the frequency and amplitude of the base excitation. Model results are validated against experimental findings that demonstrate power harvesting densities on the order of picowatts per millimeter cubed.
机译:在本文中,我们研究了带图案电极的离子聚合物金属复合材料(IPMC)的扭转振动引起的水下能量收集。我们关注于厘米大小的IPMC的谐波基激励,该模型被建模为细长梁,具有在粘性流体中振动的薄截面。使用复杂的流体力学函数描述了大振幅扭转振动,该函数考虑了来自周围流体的附加质量和非线性流体动力学阻尼。利用线性黑匣子模型来预测IPMC电响应作为总扭曲角的函数。从空中瞬态响应,水下稳态振动和放电实验中确定模型参数。所得的机电模型允许根据分流电阻以及基础激励的频率和幅度预测从IPMC收集的能量。根据实验结果验证了模型结果,这些实验结果表明,功率收集密度约为每平方毫米皮瓦。

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