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Response of laminated adaptive composite beams with viscoelastic interfaces

机译:具有粘弹性界面的层合自适应复合梁的响应

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The time-dependent behavior of a simply supported laminated beam bonded with two piezoelectric layers (one is bonded onto the uppermost surface of the laminated elastic beam, another onto the lowermost surface), which may be sensor or actuator, is studied using the state-space method. The Kelvin-Voigt viscoelastic constitutive relation of interfaces is introduced to model the creep behavior of bonding adhesives. The response for a laminated beam with viscous interfaces is also investigated as a particular case of the present model. Since the behavior of this smart structure under static loading is time-dependent, the power series expansion technique is adopted to approximate the variations of variable fields with time. It is shown that the function of actuator or sensor will be counteracted partly by the effect of imperfect interfaces with time elapsing. The study should open a door for the failure analysis in health monitoring of engineering structures when bonded piezoelectric sensors and actuators are used.
机译:使用以下状态研究了简单支撑的层压梁的时变行为,该梁与两个压电层(一个粘合到层压弹性梁的最上表面,另一个粘合到最下表面)(可能是传感器或促动器)结合在一起,其状态如下:空间方法。引入界面的Kelvin-Voigt粘弹性本构关系来模拟粘结粘合剂的蠕变行为。作为本模型的特殊情况,还研究了具有粘性界面的层合梁的响应。由于这种智能结构在静态载荷下的行为与时间有关,因此采用幂级数展开技术来近似估计随时间变化的变量场。结果表明,不完善的界面会随着时间的流逝部分抵消执行器或传感器的功能。当使用粘合压电传感器和执行器时,这项研究应该为工程结构的健康监测中的失效分析打开一扇门。

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