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首页> 外文期刊>Physica, B. Condensed Matter >Analytical solution for static and dynamic analysis of magnetically affected viscoelastic orthotropic double-layered graphene sheets resting on viscoelastic foundation
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Analytical solution for static and dynamic analysis of magnetically affected viscoelastic orthotropic double-layered graphene sheets resting on viscoelastic foundation

机译:粘弹性基础上磁性影响粘弹性正交双层石墨烯片静态和动态分析的分析解

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AbstractBy considering the small scale effect based on the nonlocal Eringen's theory, the static and dynamic analysis of viscoelastic orthotropic double-layered graphene sheets subjected to longitudinal magnetic field and mechanical load is investigated analytically. For this objective, first order shear deformation theory (FSDT) is proposed. The surrounding medium is simulated by visco-Pasternak foundation model in which damping, normal and transverse shear loads are taken into account. The governing equations of motion are obtained via energy method and Hamilton's principle which are then solved analytically by means of Navier's approach and Laplace inversion technique in the space and time domains, respectively. Through various parametric studies, the influences of the nonlocal parameter, structural damping, van der Waals (vdW) interaction, stiffness and damping coefficient of the foundation, magnetic parameter, aspect ratio and length to thickness ratio on the static and dynamic response of the nanoplates are examined. The results depict that when the vdW interaction is considered to be zero, the upper layer deflection reaches a maximum point whereas the lower layer deflection becomes zero. In addition, it is observed that with growing the vdW interaction, the effect of magnetic field on the deflection of the lower layer increases while this effect reduces for the upper layer deflection.Highlights
机译:<![CDATA [ 抽象 通过考虑基于非本体eringen理论的小规模效果,粘弹性原位双重的静态和动态分析经过分析研究经受纵向磁场和机械载荷的层状石墨烯片。为此目的,提出了一阶剪切变形理论(FSDT)。周围介质由Visco-Pasternak基础模型模拟,其中考虑了阻尼,正常和横向剪切载荷。通过能量法和汉密尔顿的原理获得了运动的控制方程,然后通过海军的方法和空间和时间域中的拉普拉斯反演技术分析地解决了。通过各种参数研究,非局部参数,结构阻尼,范德华(VDW)相互作用,刚度和阻尼系数的影响,磁性参数,纵横比和长度与厚度比纳米板的静态响应检查。结果描绘了当VDW相互作用被认为是零时,上层偏转达到最大点,而下层偏转变为零。另外,观察到,随着VDW相互作用的增长,磁场对下层的偏转的影响增加,而这种效果降低了上层偏转。 亮点

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