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Nonlinear internal resonance of double-walled nanobeams under parametric excitation by nonlocal continuum theory

机译:非局部连续理论在双壁纳米梁参数激励下的非线性内共振

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In the present work, the nonlinear internal resonance of double-walled nanobeams under the external parametric load is studied. The nonlocal continuum theory is applied to describe the nano scale effects and the nonlinear governing equations are derived by the multiple scale method. The parametric internal resonance is considered and the relation between the frequency and amplitude is discussed. From the numerical simulation, it can be observed that small scale effects are more obvious for short structures. Three different nonlinear cases can be found. The gap between the stable and instable regions is reduced by the van der Walls (vdW) interaction but enhanced by the excitation amplitude. Moreover, the dynamical motions of double-walled nanobeams are sensitive to the initial condition and excitation frequency.
机译:在目前的工作中,研究了在外部参数载荷下双壁纳米梁的非线性内部共振。应用非局部连续理论描述了纳米尺度效应,并通过多尺度方法推导了非线性控制方程。考虑参数内部共振,并讨论频率和幅度之间的关系。从数值模拟可以看出,短结构的小尺度效应更为明显。可以发现三种不同的非线性情况。范德墙(vdW)相互作用减小了稳定区域与不稳定区域之间的间隙,但激励幅度增大了间隙。而且,双壁纳米束的动力学运动对初始条件和激发频率敏感。

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