首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Experimentally and Numerically Validated Analytical Solutions to Nonbuckling Piezoelectric Serpentine Ribbons
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Experimentally and Numerically Validated Analytical Solutions to Nonbuckling Piezoelectric Serpentine Ribbons

机译:非标签压电蛇形带的实验和数值验证的分析解决方案

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摘要

Emerging stretchable piezoelectric devices have added exciting sensing and energy harvesting capabilities to wearable and implantable soft electronics. As conventional piezoelectric materials are intrinsically stiff and some are even brittle, out-of-plane wrinkled or buckled structures and in-plane serpentine ribbons have been introduced to enhance their compliance and stretchability. Among those stretchable structures, in-plane piezoelectric serpentine ribbons (PSRs) are preferred on account of their manufacturability and low profiles. To elucidate the trade-off between compliance and sensitivity of PSRs of various shapes, we herein report a theoretical framework by combining the piezoelectric plate theory with our previously developed elasticity solutions for passive serpentine ribbons without piezoelectric property. The electric displacement field and the output voltage of a freestanding but nonbuckling PSR under uniaxial stretch can be analytically solved under linear assumptions. Our analytical solutions were validated by finite element modeling (FEM) and experiments using polyvinylidene fluoride (PVDF)-based PSR. In addition to freestanding PSRs, PSRs sandwiched by polymer layers were also investigated by FEM and experiments. We found that thicker and stiffer polymers reduce the stretchability but enhance the voltage output of PSRs. When the matrix is much softer than the piezoelectric material, our analytical solutions to a freestanding PSR are also applicable to the sandwiched ones.
机译:新兴的可伸展压电装置向可穿戴和植入的软电子产品增加了令人兴奋的感应和能量收集能力。由于传统的压电材料是本质上刚性的,并且已经引入了一些甚至是脆性的甚至脆性,外平面皱褶或弯曲的结构,并且在平面内蛇纹带丝带增强了它们的顺应性和拉伸性。在那些可拉伸的结构中,由于它们的制造性和低轮廓,因此优选在平面内压电蛇形带(PSR)。为了阐明各种形状PSR的合规性和敏感性之间的折衷,我们通过将压电板理论与未在没有压电性的无源蛇形带的被动蛇形带的弹性解决方案结合,通过将压电板理论组合来报告理论框架。在单轴拉伸下,在单轴拉伸下自由设施但非标记PSR的电置换场和输出电压可以在线性假设进行分析。通过有限元建模(FEM)和使用聚偏二氟乙烯(PVDF)的PSR进行实验验证我们的分析溶液。除了独立的PSR之外,还通过FEM和实验研究了由聚合物层夹在聚合物层外的PSR。我们发现较厚和更静的聚合物降低了可拉伸性,但增强了PSR的电压输出。当矩阵比压电材料更柔软时,我们对独立PSR的分析解决方案也适用于夹层的PSR。

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