Nonlinear dynamical response of sinusoidal impulsive actuated piezoelectric/porous sandwich nanoharvesters via GM-based meshfree collocation formulations

IF 4.4 2区 工程技术 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Saeid Sahmani , Babak Safaei , Fan Fan
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Abstract

In this paper a new effective computational approach based upon a meshless collocation formulation of the Gurtin-Murdoch (GM) continuum elasticity is described. The newly developed computational model for the third-order shear flexible elastic plates is then employed to analyze the nonlinear dynamical response of piezoelectric/porous sandwich nanoharvesters subjected to a sinusoidal impulsive actuation. The material properties relevant to the porous passive core having uniform or two graded through thickness porosity dispersions are estimated using the approach of Gaussian random field. The weak form of model conception is discretized and solved numerically via employing an incorporation of the polynomial and radial basis functions having the capability to remove any feasible singularity as well as taking more precise approximation into account within the GM-based meshfree collocation formulations. It is deduced that by contemplating the surface stress tensor via the established GM-based model, the achieved voltage from the sinusoidal impulsive actuated sandwich nanoharvesters reduces, especially for those possessing lower thickness. Also, it is deduced that for the fully simply supported impulsive actuated sandwich nanoharvester, by changing the porosity decoration of distribution from the uniform decoration to FGO and FGX graded ones, the significance of the role of surface stress tensor in the achieved voltage reduces from 12.45% to 12.28%, and enhances from 12.45% to 12.64%, respectively. For the fully clamped impulsive actuated sandwich nanoharvester, by changing the porosity decoration of distribution from the uniform decoration to FGO and FGX graded ones, the significance of the role of surface stress tensor in the achieved voltage reduces from 15.01% to 14.68%, and enhances from 15.01% to 15.37%, respectively.

通过基于 GM 的无网格配位公式计算正弦脉冲致动压电/多孔夹层纳米采集器的非线性动力学响应
本文介绍了一种基于 Gurtin-Murdoch (GM) 连续弹性无网格配位公式的新型有效计算方法。然后,利用新开发的三阶剪切柔性弹性板计算模型,分析了正弦脉冲激励下压电/多孔夹层纳米采集器的非线性动态响应。使用高斯随机场方法估算了具有均匀或两级厚度孔隙率分散的多孔被动芯的相关材料特性。通过采用多项式和径向基函数,对模型概念的弱形式进行离散化和数值求解,这些函数能够消除任何可行的奇异点,并在基于 GM 的无网格配位公式中考虑到更精确的近似值。由此推断,通过基于 GM 的既定模型考虑表面应力张量,正弦脉冲驱动的夹层纳米采集器所获得的电压会降低,特别是对于厚度较低的采集器。此外,对于全简支撑脉冲驱动夹层纳米贮存器,通过将分布的孔隙率装饰从均匀装饰改为 FGO 和 FGX 梯度装饰,表面应力张量对获得电压的影响分别从 12.45% 降低到 12.28%,从 12.45% 提高到 12.64%。对于全夹紧脉冲致动夹层纳米凿岩机,通过将分布的孔隙率装饰从均匀装饰改为 FGO 和 FGX 梯度装饰,表面应力张量在所获电压中的作用分别从 15.01% 降低到 14.68%,从 15.01% 提高到 15.37%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Computers & Structures
Computers & Structures 工程技术-工程:土木
CiteScore
8.80
自引率
6.40%
发文量
122
审稿时长
33 days
期刊介绍: Computers & Structures publishes advances in the development and use of computational methods for the solution of problems in engineering and the sciences. The range of appropriate contributions is wide, and includes papers on establishing appropriate mathematical models and their numerical solution in all areas of mechanics. The journal also includes articles that present a substantial review of a field in the topics of the journal.
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