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首页> 外文期刊>Science in China. Series G, Physics, Mechanics & Astronomy >Electro-mechanical response of functionally graded beams with imperfectly integrated surface piezoelectric layers
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Electro-mechanical response of functionally graded beams with imperfectly integrated surface piezoelectric layers

机译:具有不完整集成的表面压电层的功能梯度梁的机电响应

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The time-dependent behavior of a simply-supported functionally graded beam bonded with piezoelectric sensors and actuators is studied using the state-space method. The creep behavior of bonding adhesives between piezoelectric layers and beam is characterized by a Kelvin-Voigt viscoelastic model, which is practical in a high temperature circumstance. Both the host elastic functionally graded beam and the piezoelectric layers are orthotropic and in a state of plane stress, with the former being inhomoge-neous along the thickness direction. A laminate model is employed to approximate the host beam. Moreover, the coupling effect between the elastic deformation and electric field in piezoelectric layers is considered. Results indicate that the viscoelastic property of in-terfacial adhesives has a significant effect on the function of bonded actuators and sensors with time elapsing.
机译:使用状态空间方法研究了与压电传感器和执行器结合的简单支撑的功能梯度梁的时变行为。压电层和梁之间粘合剂的蠕变行为以开尔文-沃格特粘弹性模型为特征,该模型在高温环境下非常实用。弹性功能梯度主梁和压电层都是正交各向异性的,处于平面应力状态,前者沿厚度方向是不均匀的。采用层压模型来近似主光束。此外,考虑了压电层中弹性变形与电场之间的耦合效应。结果表明,随着时间的流逝,界面粘合剂的粘弹性对粘合的执行器和传感器的功能具有重大影响。

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