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Optimized deformation behavior of a dielectric elastomer generator

机译:介电弹性体发生器的优化变形行为

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Dielectric elastomer generators (DEGs) produce electrical energy by converting mechanical into electrical energy. Efficient operation requires an optimal deformation of the DEG during the energy harvesting cycle. However, the deformation resulting from an external load has to be applied to the DEG. The deformation behavior of the DEG is dependent on the type of the mechanical interconnection between the elastic DEG and a stiff support area. The maximization of the capacitance of the DEG in the deformed state leads to the maximum absolute energy gain. Therefore several configurations of mechanical interconnections between a single DEG module as well as multiple stacked DEG modules and stiff supports are investigated in order to find the optimal mechanical interconnection. The investigation is done with numerical simulations using the FEM software ANSYS. A DEG module consists of 50 active dielectric layers with a single layer thickness of 50 μm. The elastomer material is silicone (PDMS) while the compliant electrodes are made of graphite powder. In the simulation the real material parameters of the PDMS and the graphite electrodes are included to compare simulation results to experimental investigations in the future. The numerical simulations of the several configurations are carried out as coupled electro-mechanical simulation for the first step in an energy harvesting cycle with constant external load strain. The simulation results are discussed and an optimal mechanical interconnection between DEG modules and stiff supports is derived.
机译:介电弹性体发电机(DEG)通过将机械能转换为电能来产生电能。有效的运行需要在能量收集周期中使DEG最佳变形。但是,必须将外部载荷引起的变形施加到DEG。 DEG的变形行为取决于弹性DEG与刚性支撑区域之间的机械互连类型。在变形状态下DEG的电容的最大化导致最大的绝对能量增益。因此,为了找到最佳的机械互连,研究了单个DEG模块以及多个堆叠的DEG模块和刚性支撑之间的机械互连的几种配置。使用FEM软件ANSYS通过数值模拟完成了调查。 DEG模块由50个有源电介质层组成,单层厚度为50μm。弹性体材料是硅树脂(PDMS),而柔性电极则由石墨粉制成。在仿真中,PDMS和石墨电极的真实材料参数被包括在内,以将仿真结果与未来的实验研究进行比较。在具有恒定外部负载应变的能量收集周期的第一步中,将几种配置的数值模拟作为耦合机电模拟进行。讨论了仿真结果,并得出了DEG模块与刚性支撑之间的最佳机械互连。

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