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The effect of nonlinear material viscosity on the energy harvesting performance of dielectric elastomer generators

机译:非线性材料粘度对介电弹性体发电机能量收集性能的影响

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Dielectric elastomer generators are capable of converting mechanical energy from a variety of sources into electrical energy. The energy harvesting performance depends on the interplay between electromechanical coupling, material viscosity, and multiple failure modes. Experiments also suggest that the material viscosity of dielectric elastomers is deformation-dependent, which makes the prediction of the performance of dielectric elastomer generators more challenging. By adopting the coupled field theory, finite-deformation viscoelasticity theory, and the theory for polymer dynamics, this work investigates the harvested energy and conversion efficiency of dielectric elastomer generators from theoretical perspective. By comparing the simulation results from the nonlinear viscosity model to the experimental data and the simulation results from the linear viscosity model, we further examine the possible factors that may strongly influence the performance of dielectric elastomer generators. It is found that dielectric elastomer generators exhibit higher harvested energy when nonlinear material viscosity is considered. Moreover, by selecting a higher voltage of the power supply for the generator, the conversion efficiency of dielectric elastomer generators can be greatly improved. The theoretical framework in this study is expected to offer some new insights into optimizing the design of dielectric elastomer generators and thus improving their performance.
机译:介电弹性体发生器能够将来自各种来源的机械能转换为电能。能量收集性能取决于机电耦合,材料粘度和多种故障模式之间的相互作用。实验还表明,介电弹性体的材料粘度与变形有关,这使得介电弹性体发生器性能的预测更具挑战性。通过采用耦合场理论,有限变形粘弹性理论和聚合物动力学理论,这项工作从理论的角度研究了介电弹性体发生器的能量和转换效率。通过将非线性粘度模型的仿真结果与实验数据以及线性粘度模型的仿真结果进行比较,我们进一步研究了可能强烈影响介电弹性体发电机性能的可能因素。发现当考虑非线性材料粘度时,介电弹性体发生器表现出更高的收集能量。此外,通过为发电机选择较高的电源电压,可以大大提高介电弹性体发电机的转换效率。预期该研究的理论框架将为优化介电弹性体发生器的设计并从而提高其性能提供一些新见解。

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