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Investigation of electrostrictive polymers for energy harvesting

机译:电致伸缩聚合物用于能量收集的研究

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The recent development of electrostrictive polymers has generated new opportunities for high-strain actuators. At the current time, the investigation of using electrostrictive polymer for energy harvesting, or mechanical to electrical energy conversion, is beginning to show its potential for this application. In this paper we discuss the mechanical and electrical boundary conditions for maximizing the energy harvesting density and mechanical-to-electrical coupling of electrostrictive materials. Mathematical models for different energy harvesting approaches were developed under quasistatic assumptions. Energy harvesting densities then are determined for representative electrostrictive material properties using these models. Comparison with a magnetic-based energy harvesting system suggests that electrostrictive energy harvesting systems are preferable for "small" energy harvesting applications with low-frequency excitation.
机译:电致伸缩聚合物的最新发展为高应变致动器产生了新的机会。目前,使用电致伸缩聚合物进行能量收集或机械到电能转换的研究开始显示出其在该应用中的潜力。在本文中,我们讨论了使电致伸缩材料的能量收集密度和机电耦合最大化的机械和电气边界条件。在准静态假设下开发了用于不同能量收集方法的数学模型。然后使用这些模型确定代表电致伸缩材料性能的能量收集密度。与基于磁性的能量收集系统的比较表明,电致伸缩能量收集系统对于带有低频激励的“小”能量收集应用是更可取的。

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