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首页> 外文期刊>Physica, B. Condensed Matter >A nonlocal strain gradient model for dynamic deformation of orthotropic viscoelastic graphene sheets under time harmonic thermal load
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A nonlocal strain gradient model for dynamic deformation of orthotropic viscoelastic graphene sheets under time harmonic thermal load

机译:谐波热负荷下正交粘弹性石墨烯片动态变形的非局部应变梯度模型

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摘要

This work presents a nonlocal strain gradient theory for the dynamic deformation response of a single-layered graphene sheet (SLGS) on a viscoelastic foundation and subjected to a time harmonic thermal load for various boundary conditions. Material of graphene sheets is presumed to be orthotropic and viscoelastic. The viscoelastic foundation is modeled as Kelvin-Voigt's pattern. Based on the two-unknown plate theory, the motion equations are obtained from the dynamic version of the virtual work principle. The nonlocal strain gradient theory is established from Eringen nonlocal and strain gradient theories, therefore, it contains two material scale parameters, which are nonlocal parameter and gradient coefficient. These scale parameters have two different effects on the graphene sheets. The obtained deflection is compared with that predicted in the literature. Additional numerical examples are introduced to illustrate the influences of the two length scale coefficients and other parameters on the dynamic deformation of the viscoelastic graphene sheets.
机译:该工作介绍了一种非局部应变梯度理论,用于在粘弹性基础上进行单层石墨烯片(SLG)的动态变形响应,并对各种边界条件进行时间谐波热负荷。石墨烯片材的材料被推测为正向和粘弹性。粘弹性基础被建模为Kelvin-Voigt的模式。基于两个未知的板理论,从虚拟工作原理的动态版本获得运动方程。非本周应变梯度理论是从eringen非局部和应变梯度理论建立的,因此它包含两种材料比例参数,这是非本体参数和梯度系数。这些比例参数对石墨烯片具有两种不同的效果。将得到的偏转与文献中预测的比较。引入附加的数值例子以说明两个长度系数和其他参数对粘弹性石墨烯片的动态变形的影响。

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