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Nonlinear stability and vibration of pre/post-buckled multilayer FG-GPLRPC rectangular plates

机译:前/后屈曲多层FG-GPLRPC矩形板的非线性稳定性和振动

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The present study examines the nonlinear stability and free vibration features of multilayer functionally graded graphene platelet-reinforced polymer composite (FG-GPLRPC) rectangular plates under compressive in-plane mechanical loads in pre/post buckling regimes. The GPL weight fractions layer-wisely vary across the lateral direction. Furthermore, GPLs are uniformly dispersed in the polymer matrix of each layer. The effective Young's modulus of GPL-reinforced nanocomposite is assessed via the modified Halpin–Tsai technique, while the effective mass density and Poisson's ratio are attained by the rule of mixture. Taking the von Kármán-type nonlinearity into account for the large deflection of the FG-GPLRPC plate, as well as utilizing the variational differential quadrature (VDQ) method and Lagrange equation, the system of discretized coupled nonlinear equations of motions is directly achieved based upon a parabolic shear deformation plate theory; taking into account the impacts of geometric nonlinearity, in-plane loading, rotary inertia and transverse shear deformation. Afterwards, first, by neglecting the inertia terms, the pseudo-arc length approach is used in order to plot the equilibrium postbuckling path of FG-GPLRPC plates. Then, supposing a time-dependent disturbance about the postbuckling equilibrium status, the frequency responses of pre/post-buckled FG-GPLRC plate are obtained in terms of the compressive in-plane load. The influences of various vital design parameters are discussed through various parametric studies.
机译:本研究研究了在屈曲前/后屈曲状态下,多层功能梯度石墨烯片增强聚合物复合材料(FG-GPLRPC)矩形板在平面内机械载荷下的非线性稳定性和自由振动特征。 GPL重量分数在横向上逐层变化。此外,GPL均匀地分散在每一层的聚合物基质中。通过改良的Halpin–Tsai技术评估GPL增强纳米复合材料的有效杨氏模量,而有效质量密度和泊松比则通过混合法则获得。考虑到vonKármán型非线性因素导致FG-GPLRPC板的大挠度,并利用变分正交(VDQ)方法和Lagrange方程,直接基于离散离散非线性运动方程组抛物线剪切变形板理论;考虑到几何非线性,面内载荷,旋转惯性和横向剪切变形的影响。然后,首先,通过忽略惯性项,使用伪弧长方法来绘制FG-GPLRPC板的平衡后屈曲路径。然后,假设关于屈曲后平衡状态的时间依赖性扰动,则根据压缩面内载荷来获得屈曲前后的FG-GPLRC板的频率响应。通过各种参数研究讨论了各种重要设计参数的影响。

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