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Asymmetric Oscillations of AFG Microscale Nonuniform Deformable Timoshenko Beams

机译:AFG Microscale非均匀可变形Timoshenko梁的不对称振荡

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A nonlinear vibration analysis is conducted on the mechanical behavior of axially functionally graded (AFG) microscale Timoshenko nonuniform beams. Asymmetry is due to both the nonuniform material mixture and geometric nonuniformity. Using the Timoshenko beam theory, the continuous models for translation/rotation are developed via an energy balance. Size-dependence is incorporated via the modified couple stress theory and the rotation via the Timoshenko beam theory. Galerkins method of discretization is applied and numerical simulations are conducted for a size-dependent vibration of the AFG microscale beam. Effects of material gradient index and axial change in the cross-sectional area on the force and frequency diagrams are investigated.
机译:在轴向功能梯度(AFG)Microscale Timoshenko非均匀梁的机械行为上进行非线性振动分析。不对称是由于非均匀材料混合物和几何不均匀性。使用Timoshenko光束理论,通过能量平衡开发出翻译/旋转的连续模型。通过修改的耦合应力理论并通过Timoshenko光束理论旋转来依赖于依赖性。应用离散化的Galerkins方法,并对AFG MicroScle光束的尺寸依赖性振动进行数值模拟。研究了物质梯度指数和力和频率图横截面积轴向变化的影响。

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