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On wave propagation in two-dimensional functionally graded porous rotating nano-beams using a general nonlocal higher-order beam model

机译:使用通用非局部高阶光束模型在二维功能梯度多孔旋转纳米束中的波传播

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This paper studies the wave propagation of two-dimensional functionally graded (2D-FG) porous rotating nano-beams for the first time. The rotating nano-beams are made of two different materials, and the material properties of the nano-beams alter both in the thickness and length directions. The general nonlocal theory (GNT) in conjunction with Reddy's beam model are employed to formulate the size-dependent model. The GNT efficiently models the dispersions of acoustic waves when two independent nonlocal fields are modelled for the longitudinal and transverse acoustic waves. The governing equations of motion for the 2D-FG porous rotating nano-beams are established using Hamilton's principle as a function of the axial force due to centrifugal stiffening and displacement. The analytic solution is applied to obtain the results and solve the governing equations. The effect of the features of different parameters such as functionally graded power indexes, porosity, angular velocity, and material variation on the wave propagation characteristics of the rotating nano-beams are discussed in detail.
机译:本文首次研究了二维功能梯度(2D-FG)多孔旋转纳米束的波传播。旋转的纳米束由两种不同的材料制成,并且纳米束的材料特性在厚度和长度方向上都改变。通用非局部理论(GNT)结合Reddy的梁模型被用来制定尺寸依赖模型。当为纵向和横向声波建模两个独立的非局部场时,GNT可以有效地对声波的色散建模。利用汉密尔顿原理,建立了2D-FG多孔旋转纳米光束的运动控制方程,该方程是由离心硬化和位移引起的轴向力的函数。应用解析解获得结果并求解控制方程。详细讨论了功能梯度功率指数,孔隙率,角速度和材料变化等不同参数的特征对旋转纳米束波传播特性的影响。

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