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Nonlinear free vibrations of bi-directional functionally graded microano-beams including nonlocal stress and microstructural strain gradient size effects

机译:双向功能梯度微/纳米梁的非线性自由振动,包括非识别应力和微观结构应变梯度尺寸效应

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Recently, advanced materials whose properties vary within a continuous pattern have been put to use to design and manufacture modem structures. In the current investigation, size dependencies are captured in the nonlinear free vibration characteristics of microano-beams made of bi-directional functionally graded materials (2D-FGM). With the aid of the nonlocal strain gradient elasticity theory and the variational principle, the size-dependent nonlinear differential equations of motion are derived within the framework of the refined hyperbolic shear deformation beam theory. It is supposed that the material properties are distributed exponentially along longitudinal direction, and vary based on the power law function in lateral direction. Moreover, the deviation of the associated physical neutral plane from the mid-plane counterpart is taken into consideration. By employing a numerical solution methodology on the basis of the generalized differential quadrature method (GDQM) together with Galerkin technique and pseudo arc-length continuation method, the nonlocal strain gradient frequency-deflection responses of 2D-FGM microano-beam are obtained corresponding to various values of longitudinal and lateral material property indexes and small scale parameters. It is revealed that the increment made by the strain gradient size dependency in the value of the nonlinear frequency is more than the reduction caused by the nonlocality, especially for the lower maximum deflection imposed to the 2D-FGM microano-beam. Also, it is indicated that for lower values of the material property gradient indexes, the reduction in the nonlinear frequency caused by the lateral functionally graded pattern in the absence of the axial functionally graded pattern is more than that made by the vice versa case. However, for higher values of the material property gradient indexes, an opposite observation is seen.
机译:最近,已经在连续模式中变化的先进材料已经用于设计和制造调制解调器结构。在当前的调查中,在由双向功能梯度材料(2D-FGM)制成的微/纳米梁的非线性自由振动特性中捕获尺寸依赖性。借助于非本体应变梯度弹性理论和变分原理,在精制双曲剪切变形光束理论的框架内导出运动的尺寸依赖性非线性微分方程。假设材料特性沿纵向指数地分布,并根据横向的电力法函数而变化。此外,考虑了相关物理中性平面与中平面对应物的偏差。通过基于广义差分正交方法(GDQM)与Galerkin技术和伪弧长连续方法一起使用数值解方法,获得了2D-FGM微/纳米光束的非本质应变梯度频率偏转响应纵向和横向材料性能指标和小规模参数的各种值。据透露,由非线性频率值的应变梯度尺寸依赖性所做的增量大于由非竞争引起的减少,特别是对于施加到2D-FGM微/纳米梁的较低的最大偏转。此外,表示,对于材料特性梯度指标的较低值,在不存在轴向功能梯度图案中由横向功能梯度图案引起的非线性频率的降低大于反之亦然壳体的。然而,对于较高的材料性质梯度指标值,可以看到相反的观察。

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