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A new size-dependent shear deformation theory for wave propagation analysis of triclinic nanobeams

机译:三型纳米波浪波传播分析的新尺寸依赖性剪切变形理论

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摘要

For the first time, longitudinal and transverse wave propagation of triclinic nanobeam is investigated via a size-dependent shear deformation theory including stretching effect. Furthermore, the influence of initial stress is studied. To consider the size-dependent effects, the nonlocal strain gradient theory is used in which two small scale parameters predict the behavior of wave propagation more accurately. The Hamiltonian principle is adopted to obtain the governing equations of wave motion, then an analytic technique is applied to solve the problem. It is demonstrated that the wave characteristics of the nanobeam rely on the wave number, nonlocal parameter, strain gradient parameter, initial stress, and elastic foundation. From this paper, it is concluded that the results of wave dispersion in isotropic and anisotropic nanobeams are almost the same in the presented case study. So, in this case, triclinic nanobeam can be approximated with isotropic model.
机译:由于第一次,通过尺寸依赖性剪切变形理论研究了三级纳米射游的纵向和横向波传播,包括拉伸效应。 此外,研究了初始应力的影响。 为了考虑依赖尺寸的效果,使用非本种应变梯度理论,其中两个小规模参数更准确地预测波传播的行为。 采用哈密顿原理获得波动的控制方程,然后应用分析技术来解决问题。 证明纳米射游的波特性依赖于波数,非局部参数,应变梯度参数,初始应力和弹性基础。 从本文中,得出结论,在本案例研究中,各向同性和各向异性纳米芯片中的波分散的结果几乎相同。 因此,在这种情况下,可以用各向同性模型近似三级纳米射线。

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