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首页> 外文期刊>Micro & Nano Letters, IET >Combining surface effects and non-local two variable refined plate theories on the shear/biaxial buckling and vibration of silver nanoplates
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Combining surface effects and non-local two variable refined plate theories on the shear/biaxial buckling and vibration of silver nanoplates

机译:结合表面效应和非局部两种可变细化板理论对银纳米板的剪切/双轴屈曲和振动的影响

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In this reported work, surface effects and non-local two variable refined plate theories are combined on the shear/biaxial buckling and vibration of rectangular nanoplates. A silver sheet is selected as the case study to investigate the numerical results. Surface effects are considered by Gurtin–Murdoch's theory. The differential quadrature method is used to solve the governing equations. Differential quadrature solutions are verified by Navier's method. The influences of the non-local parameter on the surface effects of shear/biaxial buckling and vibration are investigated for various boundary conditions. Results show that by increasing the non-local parameter, the effects of surface on the buckling and vibration increase. This result is in contrast with the works of other researchers in the field. Moreover, the non-local effects on the shear buckling and vibration are more important than that of biaxial, whereas the surface effects on the biaxial buckling and vibration are more notable than that of shear.
机译:在这项报道的工作中,将表面效应和非局部两个可变精制板理论组合在一起,用于矩形纳米板的剪切/双轴屈曲和振动。选择一个银片作为案例研究以研究数值结果。古尔丁·默多克的理论考虑了表面效应。微分求积法用于求解控制方程。差分正交解通过Navier方法验证。在各种边界条件下,研究了非局部参数对剪切/双轴屈曲和振动的表面效应的影响。结果表明,通过增加非局部参数,表面对屈曲和振动的影响增加。该结果与该领域其他研究人员的工作形成对比。此外,对剪切屈曲和振动的非局部影响比双轴更重要,而对双轴屈曲和振动的表面影响比对剪切的影响更为显着。

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