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Nonlinear Dynamic Response and Active Control of Piezoelastic Laminated Shallow Spherical Shells with Damage

机译:损伤的压电弹性层合扁球壳的非线性动力响应和主动控制

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摘要

Based on Talreja's damage model with tensor valued internal state variables and geometric nonlinear theory, the constitutive relations for a moderately thick shallow spherical shell with damage are derived. The distribution of electric potential along the thickness direction in the piezoelectric layer is simulated by a sinusoidal function, and accordingly the dynamic analytical model for the cross-ply laminated moderately thick piezoelectric shallow spherical shell is established. Using the negative velocity feedback control algorithm, an analytical model for active vibration control of the piezoelectric laminated moderately thick piezoelectric shallow spherical shell is built when the damage effect is considered. And the solutions to the whole problem are obtained with synthetical utilization of the orthogonal collocation point method and the Newark method. In numerical examples, the effects of damage, piezoelectric effect, and the structure's geometrical parameters on the dynamic response and vibration control of the piezoelastic laminated shallow spherical shells with damage are investigated.
机译:基于具有张量值内部状态变量的Talreja损伤模型和几何非线性理论,推导了具有损伤的中等厚度浅球形球壳的本构关系。利用正弦函数模拟压电层中沿厚度方向的电位分布,从而建立了交叉层压的中厚压电浅球形壳的动力学分析模型。利用负速度反馈控制算法,建立了考虑损伤效应的压电叠层中厚压电浅球形壳体主动振动控制的解析模型。并通过正交配置点法和Newark方法的综合利用,获得了整个问题的解决方案。在数值实例中,研究了损伤,压电效应和结构几何参数对具有损伤的压电弹性层合浅球形壳的动力响应和振动控制的影响。

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