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Nonlinear coupled mechanics of nanotubes incorporating both nonlocal and strain gradient effects

机译:纳米管的非线性耦合力学,包括非局部和应变梯度效应

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摘要

The coupled nonlinear mechanical behavior of nonlocal strain gradient nanotubes subject to distributed excitation forcing is investigated for the first time. Both longitudinal displacements and transverse deflection are taken into consideration in both the continuum-based formulation and the numerical solution. The influences of being at the nanoscale level are modeled with the use of the nonlocal strain gradient theory. The coupled large amplitude motion characteristics are extracted via Galerkin's approach and a continuation method. The influences of scale coefficients, the slenderness ratio, and the force amplitude of the external forcing on the motion are examined.
机译:第一次研究了经受分布式激发强制的非本体应变梯度纳米管的偶联非线性力学行为。 在连续的基础配方和数值溶液中考虑纵向位移和横向偏转。 在使用非本体应变梯度理论的情况下建模存在于纳米级水平的影响。 通过Galerkin的方法和延续方法提取耦合的大幅度运动特性。 检查了尺度系数,细长比和外部迫使运动的力幅度的影响。

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