Abstract Vibration study of curved nanobeams based on nonlocal higher-order shear deformation theory using finite element approach
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Vibration study of curved nanobeams based on nonlocal higher-order shear deformation theory using finite element approach

机译:基于非局部高阶剪切变形理论的有限元方法研究弯曲纳米束的振动

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AbstractIn the present work, vibration analysis of curved nanobeams is investigated using nonlocal elasticity approach based on Eringen formulation coupled with a higher-order shear deformation theory accounting for through thickness stretching effect. The formulation developed here is general in the sense that it can be deduced to examine the influence of different structural theories and analyses of nanobeams. The governing equations derived are solved employing finite element method by introducing a 3-nodes curved beam element. The formulation is validated considering problems for which solutions are available. A comparative study is made using various structural models. The effects of various structural and material parameters such as thickness ratio, beam length, rise of the curved beam, boundary conditions, and size-dependent or nonlocal parameter are brought out on the vibration behaviours of curved nanobeams.
机译: 摘要 在当前工作中,基于Eringen公式并结合高阶剪切变形,使用非局部弹性方法研究了弯曲纳米束的振动分析。理论解释了厚度穿透效应。从某种意义上讲,这里开发的公式是通用的,可以推论它来检查不同结构理论和纳米束分析的影响。通过引入三节点弯曲梁单元,采用有限元方法求解导出的控制方程。考虑到可用解决方案的问题,对配方进行了验证。使用各种结构模型进行了比较研究。提出了各种结构和材料参数,如厚度比,光束长度,弯曲光束的上升,边界条件以及尺寸相关或非局部参数对弯曲纳米光束的振动行为的影响。

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