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Three dimensional finite element modeling of smart foam

机译:智能泡沫的三维有限元建模

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The "smart foam" concept and design originate from the combination of the passive dissipation capability of foam in the medium and high frequency ranges and the active absorption ability of piezoelectric actuator (generally polyvinylidene fluoride) in the low frequency range. This results into a passive/active absorption control device that can efficiently operate over a broad range of frequencies. In this paper, a full three dimensional finite element model of smart foam is presented including its experimental validation. The modeling tool uses quadratic poroelastic elements, as well as elastic, fluid, and piezoelectric elements. The weak integral formulation of the different media involved is presented with the associated coupling conditions. A simplified orthotropic model of poroelastic media is presented. To validate the developed model, a prototype of a smart foam has been realized and its passive absorption and radiation measured in an impedance tube and compared to predictions. The experimental validation demonstrates the validity of the model. This modeling tool constitutes a general platform to simulate and optimize various configurations of smart foams.
机译:“智能泡沫”的概念和设计源于中频和高频范围内泡沫的无源消散能力与低频范围内压电执行器(通常为聚偏二氟乙烯)的主动吸收能力的结合。这导致可以在宽范围的频率上有效地工作的无源/有源吸收控制装置。本文提出了智能泡沫的完整三维有限元模型,包括其实验验证。建模工具使用二次多孔弹性单元,以及弹性,流体和压电单元。所涉及的不同介质的弱积分公式与相关的耦合条件一起呈现。提出了多孔弹性介质的正交各向异性简化模型。为了验证开发的模型,已经实现了智能泡沫的原型,并在阻抗管中测量了其被动吸收和辐射并将其与预测值进行了比较。实验验证证明了该模型的有效性。该建模工具构成了一个通用平台,可以模拟和优化智能泡沫的各种配置。

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