首页> 外文会议>ASME international mechanical engineering congress and exposition >LOW-VELOCITY GLOBAL-LOCAL IMPACT RESPONSE OF SMART COMPOSITE AND SANDWICH COMPOSITE PLATES WITH PIEZOELECTRIC TRANSDUCERS
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LOW-VELOCITY GLOBAL-LOCAL IMPACT RESPONSE OF SMART COMPOSITE AND SANDWICH COMPOSITE PLATES WITH PIEZOELECTRIC TRANSDUCERS

机译:带压电传感器的智能复合材料和夹心复合材料板的低速整体局部冲击响应

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摘要

Higher-order layerwise piezoelectric laminate mechanics are presented for predicting the low-velocity impact response of pristine composite and sandwich composite plates with piezoelectric transducers. The present formulation enables prediction of the global (temporal variation of impact force, deflection, strain and sensory potential) and local through-thickness (distribution of displacement, stress and strain) impact response of plates with piezoelectric layers or patches. Its enhanced capabilities include efficiency in terms of computational cost, since the system matrices are reduced by means of a Guyan scheme or by using the eigenvectors, thus leading to a plate-impactor system containing a single or two deflection amplitudes per vibration mode, depending on consideration of transverse compressibility. The transfer of the plate-impactor system to state-space enables investigation of the feasibility of real-time active control towards impact force reduction by using output feedback control laws.
机译:提出了更高阶的分层压电层压板力学,以预测带有压电换能器的原始复合板和夹心复合板的低​​速冲击响应。本发明的配方能够预测具有压电层或贴片的板的整体(冲击力,挠度,应变和感官势的时间变化)和局部贯穿厚度(位移,应力和应变的分布)的冲击响应。它的增强功能包括计算成本方面的效率,因为系统的方法是通过Guyan方案或通过使用特征向量来减少系统矩阵,从而导致平板振动器系统每个振动模式包含一个或两个偏转幅度,具体取决于考虑横向压缩性。通过将板式冲击器系统转移到状态空间,可以研究使用输出反馈控制律进行实时主动控制以减小冲击力的可行性。

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