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首页> 外文期刊>Structural Engineering and Mechanics >Vibration analysis of FG nanoplates with nanovoids on viscoelastic substrate under hygro-thermo-mechanical loading using nonlocal strain gradient theory
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Vibration analysis of FG nanoplates with nanovoids on viscoelastic substrate under hygro-thermo-mechanical loading using nonlocal strain gradient theory

机译:基于非局部应变梯度理论的湿热力学载荷作用下粘弹性基底上含纳米孔的FG纳米板的振动分析

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摘要

According to a generalized nonlocal strain gradient theory (NSGT), dynamic modeling and free vibrational analysis of nanoporous inhomogeneous nanoplates is presented. The present model incorporates two scale coefficients to examine vibration behavior of nanoplates much accurately. Porosity-dependent material properties of the nanoplate are defined via a modified power-law function. The nanoplate is resting on a viscoelastic substrate and is subjected to hygro-thermal environment and in-plane linearly varying mechanical loads. The governing equations and related classical and non-classical boundary conditions are derived based on Hamilton's principle. These equations are solved for hinged nanoplates via Galerkin's method. Obtained results show the importance of hygro-thermal loading, viscoelastic medium, in-plane bending load, gradient index, nonlocal parameter, strain gradient parameter and porosities on vibrational characteristics of size-dependent FG nanoplates.
机译:根据广义非局部应变梯度理论(NSGT),提出了纳米多孔非均质纳米板的动力学建模和自由振动分析。本模型结合了两个比例系数,可以更准确地检查纳米板的振动行为。纳米板的孔隙率相关的材料特性是通过修改的幂律函数定义的。纳米板放置在粘弹性基材上,并经受湿热环境和面内线性变化的机械载荷。基于汉密尔顿原理,推导了控制方程及相关的经典和非经典边界条件。通过Galerkin方法求解了铰接纳米板的这些方程。所得结果表明湿热载荷,粘弹性介质,面内弯曲载荷,梯度指数,非局部参数,应变梯度参数和孔隙度对尺寸依赖性FG纳米板的振动特性的重要性。

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