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3-3 piezoelectric metamaterial with negative and zero Poisson's ratio for hydrophones applications

机译:3-3泊松比为负零的压电超材料,用于水听器

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摘要

This study presents the electromechanical properties of the 3-3 piezoelectric metamaterial based on variants of honeycomb (HC) structure. Three kinds of three-dimensional (3D) elastically anisotropic and piezoelectrically active HC structures were introduced, namely, conventional HC (3D-CHC), a re-entrant HC (3D-RE) and a semi re-entrant HC (3D-SRE). Highly porous 3D finite element models of the mentioned three kinds of metamaterials were developed and the role of ligament orientation on their effective elastic, piezoelectric and dielectric properties was completely characterized. The intrinsic symmetry of HC structure was utilized and simplified mixed boundary conditions equivalent to periodic boundary conditions were recognized. In comparison to their bulk constituent, all the 3-3 type piezoelectric HC networks exhibited an enhanced response, especially for the longitudinal poling. The normalized figures of merit show a mild dependence on the angle theta and the underlying deformation mechanisms associated with the zero, positive and negative Poisson's ratios. Figures of merit such as hydrostatic strain coefficient (d(h)), the hydrostatic figure of merit (d(h).g(h)) and the acoustic impedance (Z) reached their best values at small angles, i.e., theta = 30 degrees. Longitudinally poled networks exhibited four order of magnitude increase in their hydrostatic figure of merit (foam to solid ratio 10,000) and one order of magnitude decrease in the acoustic impedance indicating their applicability for the design of hydrophones.
机译:这项研究提出了基于蜂窝(HC)结构的3-3压电超材料的机电性能。介绍了三种三维(3D)弹性各向异性和压电活性HC结构,即常规HC(3D-CHC),折返HC(3D-RE)和半折返HC(3D-SRE) )。建立了上述三种超材料的高孔隙度3D有限元模型,并充分表征了韧带取向对其有效弹性,压电和介电性能的作用。利用HC结构的内在对称性,并识别出等效于周期性边界条件的简化混合边界条件。与它们的整体组成相比,所有3-3型压电HC网络都表现出增强的响应,特别是对于纵向极化。归一化的品质因数显示对角度theta和与零泊松比,正泊松比和负泊松比相关的潜在变形机制的温和依赖。诸如静水应变系数(d(h)),静水力学品质因数(d(h).g(h))和声阻抗(Z)等品质因数在小角度都达到了最佳值,即theta = 30度纵向极化网络在其静水压力性能指标上显示出四个数量级的增加(泡沫与固体之比> 10,000),并且在声阻抗上下降了一个数量级,表明它们适用于水听器的设计。

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