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Coupling of experimentally validated electroelastic dynamics and mixing rules formulation for macro-fiber composite piezoelectric structures

机译:大型纤维复合压电结构的实验验证电弹性动力学和混合规则公式的耦合

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Piezoelectric structures have been used in a variety of applications ranging from vibration control and sensing to morphing and energy harvesting. In order to employ the effective 33-mode of piezoelectricity, interdigitated electrodes have been used in the design of macro-fiber composites which employ piezoelectric fibers with rectangular cross section. In this article, we present an investigation of the two-way electroelastic coupling (in the sense of direct and converse piezoelectric effects) in bimorph cantilevers that employ interdigitated electrodes for 33-mode operation. A distributed-parameter electroelastic modeling framework is developed for the elastodynamic scenarios of piezoelectric power generation and dynamic actuation. Mixing rules (i.e. rule of mixtures) formulation is employed to evaluate the equivalent and homogenized properties of macro-fiber composite structures. The electroelastic and dielectric properties of a representative volume element (piezoelectric fiber and epoxy matrix) between two neighboring interdigitated electrodes are then coupled with the global electro-elastodynamics based on the Euler-Bernoulli kinematics accounting for two-way electromechanical coupling. Various macro-fiber composite bimorph cantilevers with different widths are tested for resonant dynamic actuation and power generation with resistive shunt damping. Excellent agreement is reported between the measured electroelastic frequency response and predictions of the analytical framework that bridges the continuum electro-elastodynamics and mixing rules formulation.
机译:压电结构已用于从振动控制和传感到变形和能量收集的各种应用中。为了采用有效的33模压电性,叉指式电极已被用于设计采用矩形截面压电纤维的大纤维复合材料。在本文中,我们对双压电晶片悬臂中的双向电弹性耦合(就直接和逆压电效应而言)进行了研究,该悬臂采用指状电极进行33模式操作。针对压电发电和动态驱动的弹性动力学场景,开发了分布式参数电弹性建模框架。采用混合规则(即混合物规则)来评估大纤维复合结构的等效和均质性能。然后,基于考虑双向机电耦合的欧拉-伯努利运动学,将两个相邻的叉指式电极之间的代表性体积元素(压电纤维和环氧基质)的电弹性和介电特性与整体电弹性耦合。测试了各种具有不同宽度的宏纤维复合双压电晶片悬臂,以利用电阻分流阻尼进行共振动态驱动和发电。据报道,在测量的电弹性频率响应与桥接连续电弹性动力学和混合规则公式的分析框架的预测之间达成了极好的协议。

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