Lovisi Giuseppe, Feo Luciano, Lambiase Annavirginia, Penna Rosa
Department of Civil Engineering, University of Salerno, 84084 Fisciano, Italy.
Nanomaterials (Basel). 2024 Feb 12;14(4):350. doi: 10.3390/nano14040350.
This paper employs a surface stress-driven nonlocal theory to investigate the synergistic impact of long-range interaction and surface energy on higher vibration modes of Bernoulli-Euler nanobeams made of functionally graded material. It takes into account surface effects such as the surface modulus of elasticity, residual surface stresses, surface density, and rotary inertia. The governing equation is derived through the application of Hamilton's principle. The novelty of this work lies in its pioneering approach to studying higher-order vibrations, carefully considering the combination of long-range interactions and surface energy in nanobeams of functionally graded materials through a well-posed mathematical model of nonlocal elasticity. This study conducts a parametric investigation, examining the effects of the nonlocal parameter and the material gradient index for four static schemes: Cantilever, Simply-Supported, Clamped-Pinned and Clamped-Clamped nanobeams. The outcomes are presented and discussed, highlighting the normalized nonlocal natural frequencies for the second through fifth modes of vibration in each case under study. In particular, this study illustrates the central role of surface effects in the dynamic response of nanobeams, emphasizing the importance of considering them. Furthermore, the parametric analysis reveals that the dynamic response is influenced by the combined effects of the nonlocal parameter, the material gradient index, the shapes of the cross-sections considered, as well as the static scheme analyzed.
本文采用表面应力驱动的非局部理论,研究长程相互作用和表面能对功能梯度材料制成的伯努利 - 欧拉纳米梁高阶振动模式的协同影响。它考虑了诸如表面弹性模量、残余表面应力、表面密度和转动惯量等表面效应。通过应用哈密顿原理推导控制方程。这项工作的新颖之处在于其开创性的方法来研究高阶振动,通过一个适定的非局部弹性数学模型,仔细考虑功能梯度材料纳米梁中长程相互作用和表面能的组合。本研究进行了参数研究,考察了非局部参数和材料梯度指数对四种静态方案的影响:悬臂梁、简支梁、夹支 - pinned梁和夹支 - 夹支梁纳米梁。给出并讨论了结果,突出了每种研究情况下第二至第五振动模式的归一化非局部固有频率。特别是,本研究说明了表面效应在纳米梁动态响应中的核心作用,强调了考虑它们的重要性。此外,参数分析表明,动态响应受非局部参数、材料梯度指数、所考虑的横截面形状以及所分析的静态方案的综合影响。