Influence of dynamic fiber volume fraction on Love wave velocity in PFRC plate imperfectly bonded with piezoelectric-viscoelastic substrate

IF 2.3 3区 工程技术 Q2 MECHANICS Acta Mechanica Pub Date : 2024-11-25 DOI:10.1007/s00707-024-04147-y
Mahargha Biswas, Sayantan Guha
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Abstract

To overcome certain limitations like shape control and high acoustic impedance of monolithic piezoelectric materials, piezoelectric fiber-reinforced composites (PFRCs) and piezoelectric-viscoelastic (PV) composites have emerged as obvious and amazing replacements. Particularly in PFRCs, piezoelectric fibers are surrounded by non-piezoelectric materials, and the effective material properties of PFRCs are dependent on both the constituent materials and the amount of piezoelectric fibers (fiber volume fraction) present in the elementary units of the composite. The present research article focuses on the transference of Love-type surface acoustic waves in a PFRC layer sandwiched between a viscoelastic polymer layer and a functionally graded piezoelectric-viscoelastic (FGPV) substrate. The effective material properties of the PFRC layer obtained by the rule of mixtures along with the strength of materials approach are used for mathematical computation. The interface between PFRC and FGPV substrate is mechanically and dielectrically imperfect. The material properties of the FGPV substrate vary along the structure’s depth. Dispersion relations have been obtained for both electroded and non-electroded states. Parametric responses of fiber volume fraction, mechanical and electrical imperfections, viscosity, and functional grading on dispersion traits of Love-type wave are demonstrated through graphical plotting. The outcomes of the study can be utilized to theoretically understand the dispersion in PFRCs.

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动态纤维体积分数对非完美粘结PFRC板-压电粘弹性基板Love波速的影响
为了克服单片压电材料的形状控制和高声阻抗等局限性,压电纤维增强复合材料(PFRCs)和压电粘弹性复合材料(PV)成为明显而令人惊叹的替代品。特别是在PFRCs中,压电纤维被非压电材料包围,PFRCs的有效材料性能取决于组成材料和复合材料基本单元中存在的压电纤维的数量(纤维体积分数)。本文主要研究了粘弹性聚合物层和功能梯度压电粘弹性(FGPV)基板之间的PFRC层中love型表面声波的传递。利用混合规律和材料强度法得到的PFRC层的有效材料性能进行了数学计算。PFRC和FGPV衬底之间的界面在机械和介电方面都不完美。FGPV衬底的材料特性沿着结构的深度变化。得到了电态和非电态的色散关系。通过图形化的方法,展示了纤维体积分数、机械和电缺陷、粘度和功能分级等参数对love型波色散特性的响应。研究结果可用于从理论上理解PFRCs中的分散。
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来源期刊
Acta Mechanica
Acta Mechanica 物理-力学
CiteScore
4.30
自引率
14.80%
发文量
292
审稿时长
6.9 months
期刊介绍: Since 1965, the international journal Acta Mechanica has been among the leading journals in the field of theoretical and applied mechanics. In addition to the classical fields such as elasticity, plasticity, vibrations, rigid body dynamics, hydrodynamics, and gasdynamics, it also gives special attention to recently developed areas such as non-Newtonian fluid dynamics, micro/nano mechanics, smart materials and structures, and issues at the interface of mechanics and materials. The journal further publishes papers in such related fields as rheology, thermodynamics, and electromagnetic interactions with fluids and solids. In addition, articles in applied mathematics dealing with significant mechanics problems are also welcome.
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