首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Orthotropic patterns of visco-Pasternak foundation in nonlocal vibration of orthotropic graphene sheet under thermo-magnetic fields based on new first-order shear deformation theory
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Orthotropic patterns of visco-Pasternak foundation in nonlocal vibration of orthotropic graphene sheet under thermo-magnetic fields based on new first-order shear deformation theory

机译:基于新的一阶剪切变形理论的正交各向异性石墨烯片非局部振动中粘-帕斯泰纳克地基的正交各向异性模式

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摘要

In the present research, vibration and instability of orthotropic graphene sheet subjected to thermo-magnetic fields are investigated. Orthotropic visco-Pasternak foundation is considered to analyze the influences of orthotropy angle, damping coefficient, normal and shear modulus. New first-order shear deformation theory is utilized due to accuracy of its polynomial functions compared to other theories of plate. Motion equations are obtained by means of Hamilton's principle and then solved analytically. Influences of various parameters such as small scale, magnetic field, orthotropic viscoelastic surrounding medium, thickness and aspect ratio of single layer graphene sheet on the vibration characteristics of nanoplate are discussed in detail. The results indicate that the stability of single layer graphene sheet is strongly dependent on applied magnetic field. Therefore, the mechanical behavior of single layer graphene sheet can be improved by applying magnetic field. The results of this investigation can be used in design and manufacturing of microano mechanical systems.
机译:在本研究中,研究了正交异性石墨烯片在热磁场作用下的振动和不稳定性。考虑正交各向异性粘滞-帕斯泰纳克基础,以分析正交各向异性角,阻尼系数,法向和剪切模量的影响。相较于其他板理论,由于其多项式函数的准确性,因此采用了新的一阶剪切变形理论。利用汉密尔顿原理获得运动方程,然后进行解析求解。详细讨论了小尺寸,磁场,正交各向异性粘弹性周围介质,单层石墨烯片的厚度和纵横比等各种参数对纳米板振动特性的影响。结果表明,单层石墨烯片的稳定性强烈取决于所施加的磁场。因此,可以通过施加磁场来改善单层石墨烯片的机械性能。研究的结果可用于微/纳米机械系统的设计和制造。

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