首页> 外文会议>International Conference on Adaptive Structures and Technologies; 20051009-12; Paris(FR) >REALISTIC LAYERWISE MODELS FOR THE DYNAMIC RESPONSE OF DELAMINATED COMPOSITE BEAMS WITH ACTIVE PIEZOELECTRIC SENSORS
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REALISTIC LAYERWISE MODELS FOR THE DYNAMIC RESPONSE OF DELAMINATED COMPOSITE BEAMS WITH ACTIVE PIEZOELECTRIC SENSORS

机译:主动压电传感器对复合材料三角梁动力响应的理想分层模型

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摘要

The effect of delamination on composite beam specimens with active piezoelectric sensors is analysed using a piecewise linear layerwise laminate theory. The model naturally includes, among other things, the excitation of piezoactuators, a coupled electromechanical system and the effect of the actuation on the piezoceramic sensors. The developed model has the ability to describe linearly through the thickness of each layer the displacement and the electrical field. Also the model describes the effect of various delamination cracks at the displacements field as additional degrees of freedom and naturally includes the effect of interfacial contact. The quasistatic and the transient response of the delaminated composite beams are predicted and the damage effects are investigated. Also the effect of interface contact on the response of delaminated beams with active piezoelectric sensors is further quantified.
机译:使用分段线性分层层压理论,分析了分层对有源压电传感器复合梁样品的影响。该模型自然包括压电致动器的激励,耦合的机电系统以及致动对压电陶瓷传感器的影响。所开发的模型具有通过每一层的厚度线性描述位移和电场的能力。模型还描述了位移场上各种分层裂纹的影响,作为附加的自由度,并且自然包括了界面接触的影响。预测了分层复合梁的准静态和瞬态响应,并研究了其损伤效应。此外,还可以进一步量化界面接触对有源压电传感器对分层梁的响应的影响。

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