Hygro-Thermo-Mechanical Vibration Behavior of Viscoelastic Nanosheets Resting on Visco-Pasternak Medium Taking into Account Flexoelectric and Actual Surface Effects

IF 2.6 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES Arabian Journal for Science and Engineering Pub Date : 2024-04-25 DOI:10.1007/s13369-024-09017-2
Quoc Hoa Pham, Van Ke Tran, Phu-Cuong Nguyen
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Abstract

For the first time, flexoelectric and actual surface effects are applied to analyze the free oscillation of viscoelastic nanosheets resting on visco-Pasternak medium in hygro-temperature environment. The material characteristics of nanosheets are viscoelastic based on the Kelvin–Voigt model, and the visco-Pasternak medium has two layers, in which the sliding layer and the other layer are described as a spring system interspersed with a damping system. The general equation of motion of the nanosheets is established by applying Kirchhoff plate theory along with Hamilton's principle and the nonlocal strain gradient hypothesis. To solve the free vibration equations of nanosheets with various boundary conditions, the Navier and Galerkin approaches are employed. The presence of the viscoelastic component causes the nanosheets' inherent frequency to oscillate in the general situation with both imaginary and real components. Finally, the impact of coefficients on vibration of viscoelastic nanosheets is discussed in the numerical examples. This is the work that calculates the flexoelectric, surface effects, and viscoelastic-based nanosheet structures under varied loads, which serves as a precondition for their manufacture and use in reality. The present work is general because it combines the theories of nonlocal strain gradient, flexoelectricity, and actual surface effects for viscoelastic nanoplate. Currently, no research has been performed on this issue, and this study makes clear on understanding the underlying physics of electromechanical coupling at the nanoscale.

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考虑到挠电效应和实际表面效应的粘弹性纳米片静止在粘滞-帕斯捷尔纳克介质上的 Hygro-Thermo-Mechanical 振动行为
首次应用柔电效应和实际表面效应分析了粘弹性纳米片在粘滞-帕斯捷尔纳克介质上的自由振荡。纳米片的材料特性是基于 Kelvin-Voigt 模型的粘弹性,粘弹性-帕斯捷尔纳克介质有两层,其中滑动层和另一层被描述为一个弹簧系统和一个阻尼系统。通过应用基尔霍夫板理论、汉密尔顿原理和非局部应变梯度假说,建立了纳米片的一般运动方程。为了求解纳米片在各种边界条件下的自由振动方程,采用了 Navier 和 Galerkin 方法。在一般情况下,粘弹性成分的存在会导致纳米片的固有频率出现虚、实振荡。最后,在数值示例中讨论了系数对粘弹性纳米片振动的影响。这项研究计算了不同载荷下的挠电、表面效应和粘弹性纳米片结构,为其在现实中的制造和使用提供了先决条件。本研究结合了粘弹性纳米板的非局部应变梯度理论、挠电理论和实际表面效应理论,因此具有普遍性。目前,还没有人对这一问题进行过研究,而本研究清楚地揭示了纳米尺度机电耦合的基本物理原理。
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来源期刊
Arabian Journal for Science and Engineering
Arabian Journal for Science and Engineering MULTIDISCIPLINARY SCIENCES-
CiteScore
5.70
自引率
3.40%
发文量
993
期刊介绍: King Fahd University of Petroleum & Minerals (KFUPM) partnered with Springer to publish the Arabian Journal for Science and Engineering (AJSE). AJSE, which has been published by KFUPM since 1975, is a recognized national, regional and international journal that provides a great opportunity for the dissemination of research advances from the Kingdom of Saudi Arabia, MENA and the world.
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