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Non-linear vibration analysis of smart composite structures with discrete delamination using a refined layerwise theory

机译:基于精细分层理论的离散分层智能复合结构的非线性振动分析

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A non-linear vibration analysis procedure has been developed to investigate the dynamic response of composite laminates with embedded and/or surface bonded piezoelectric sensors and multiple finite/discrete delaminations. The objective is to accurately predict the sensor output in the time domain. A recently developed refined layerwise composite theory is used to develop the piezoelectric-mechanical model. A two-way coupled electro-mechanical formulation is used to derive the equations of motion. An adaptive nonlinear transient implicit algorithm is used to generate the voltage time history, which is useful in characterizing the presence of delamination. The contact problem of delaminated interfacial surfaces is modelled in terms of fictitious linear springs to provide an accurate description of the transient behavior. The accuracy of the model is validated through comparison with experimental results. The validity of low frequency vibration analysis in detection of delamination(s) from in-situ sensor outputs is also established. It is anticipated that the developed framework will be a useful tool in structural health monitoring studies. (C) 2003 Elsevier Ltd. All rights reserved.
机译:已经开发了非线性振动分析程序,以研究具有嵌入式和/或表面粘结压电传感器以及多个有限/离散分层的复合层板的动态响应。目的是在时域中准确预测传感器输出。最近开发的改进的分层复合理论被用于开发压电-机械模型。使用双向耦合的机电公式来导出运动方程。自适应非线性瞬态隐式算法用于生成电压时间历程,这对于表征分层的存在很有用。根据虚拟线性弹簧对分层界面的接触问题进行建模,以提供对瞬态行为的准确描述。通过与实验结果进行比较来验证模型的准确性。还确定了低频振动分析在从原位传感器输出中检测分层的有效性。预计开发的框架将成为结构健康监测研究的有用工具。 (C)2003 Elsevier Ltd.保留所有权利。

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