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Finite element modeling and bending analysis of piezoelectric sandwich beam with debonded actuators

机译:脱胶促动器压电夹层梁的有限元建模与弯曲分析

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The present work pays emphasis on investigating the effect of different types of debonding on the bending behaviour of active sandwich beam, consisting of both extension and shear actuators. An active sandwich beam finite element is formulated by using Timoshenko's beam theory, characterized by first order shear deformation for the core and Euler-Bernoulli's beam theory for the top and bottom faces. The problem of debondings of extension actuator and face are dealt with by employing four-region model for inner debonding and three-region model for the edge debonding respectively. Displacement based continuity conditions are enforced at the interfaces of different regions using penalty method. Firstly, piezoelectric actuation of healthy sandwich beam is assessed through deflection analysis. Then the effect of actuators' debondings with different boundary conditions on bending behavior is computationally evaluated and experimentally clamped-free case is validated. The results generated will be useful to address the damage tolerant design procedures for smart sandwich beam structures with structural control and health monitoring applications.
机译:本工作着重于研究不同类型的脱胶对主动夹心梁的弯曲行为的影响,该夹心梁由伸展和剪切致动器组成。主动夹层梁有限元采用蒂莫申科的梁理论公式化,其特征是岩心的一阶剪切变形和顶面和底面的欧拉-伯努利梁理论。通过分别采用四区域模型进行内部脱胶和三区域模型进行边缘脱胶来解决扩展执行器和面的脱胶问题。使用惩罚方法在不同区域的界面上强制执行基于位移的连续性条件。首先,通过挠度分析来评估健康夹层梁的压电致动。然后通过计算评估了执行器在不同边界条件下的剥离对弯曲行为的影响,并验证了无实验情况。产生的结果将有助于解决具有结构控制和健康监测应用的智能夹层梁结构的抗损伤设计程序。

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