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Modeling and nonlinear dynamics of an Active-Fiber Composite energy harvester with Interdigitated Electrodes

机译:具有叉角电极的主动纤维复合能量收割机的建模与非线性动力学

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The use of Active Fiber Composite (AFC) instead of traditional ceramic piezoelectric materials is characterized by high flexibility and large displacements. However, energy-harvesting capabilities of AFC are relatively low. To remedy this drawback, it is necessary to optimize its geometry in order to increase the produced electrical power. An analytically model of the system including the structural, the piezoelectric as well as electromechanical coupling of AFC piezocomposite, is proposed. The model takes into account the use of interdigitated electrode (IDE) disposition. Large deflection of the flexible beam is taking into account using a nonlinear von-Karman strain. The piezoelectric cantilever beam is bi-layered in which a substrate layer is partially covered by an AFC piezocomposite patch. The model provides an improved approach to design and analyze the electrical performance of the considered energy harvester. It takes into account the quadratic distribution voltage between two constitutive IDE. The extended Hamilton principle and the Gauss law are used to derive a reduced-order model of the active fiber composite energy harvester using a Galerkin procedure. The limit-cycle solutions are calculated using a Finite-Difference Method (FDM). The obtained frequency-response curves of the harvested electrical voltage measured across the external resistor R representing the external load are validated using Finite Element model developed using ANSYS with a homogenized piezoelectric material.
机译:使用活性纤维复合材料(AFC)代替传统的陶瓷压电材料的特征在于具有高柔韧性和大的位移。然而,AFC的能量收集能力相对较低。为了解决这个缺点,有必要优化其几何形状以增加产生的电力。提出了一种包括结构,压电以及AFC压电复合物的结构的系统的分析模型。该模型考虑了使用互指电极(IDE)配置的使用。使用非线性von-Karman菌株考虑柔性光束的大偏转。压电悬臂梁是双层的,其中基板层部分地被AFC压电复合贴片覆盖。该模型提供了一种改进的设计方法和分析所考虑的能量收割机的电气性能。它考虑了两个组成型IDE之间的二次分配电压。扩展汉密尔顿原理和高斯法律用于使用Galerkin程序导出活性纤维复合能量收割机的阶数模型。使用有限差分法(FDM)计算限制循环解决方案。通过使用具有均匀化压电材料的ANSYS开发的有限元模型验证了代表外部负载的外部电阻器R中所获得的收获电电压的所得频率响应曲线。

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