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Aalytical modelling of the electromechanical behaviour of surface-bonded piezoelectric actuators including the adhesive layer

机译:包括黏合剂层的表面结合压电致动器的机电行为的分析模型

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The behaviour of a piezoelectric actuator is strongly affected by the bonding condition along the interface between the actuator and the host structure. The current paper represents an analytical study of the static effect of the mechanical and geometrical properties of the adhesive layer on the coupled electromechanical behaviour of a thin piezoceramic actuator bonded to an elastic medium. An actuator model with an imperfect adhesive bonding layer, which undergoes a shear deformation, is proposed to simulate the two dimensional electromechanical behaviour of the integrated system. Analytical solution of the problem is provided by solving the resulting integral equations in terms of the interfa-cial stress. Numerical simulation is conducted to study the effect of the bonding layer upon the actuation process. The effect of interfacial debonding on the response of the layered structure and on the interlaminar strain and stress transfer mechanisms is discussed.
机译:压电致动器的行为受到沿致动器和主体结构之间的界面的粘结条件的强烈影响。当前的论文代表了对粘合层的机械和几何特性对结合到弹性介质上的薄压电陶瓷致动器的耦合机电行为的静态影响的分析研究。提出了一种具有不理想的粘合剂层的执行器模型,该模型经历了剪切变形,以模拟集成系统的二维机电行为。通过根据界面应力求解所得积分方程,可以提供问题的解析解。进行数值模拟以研究粘合层对致动过程的影响。讨论了界面剥离对层状结构的响应以及层间应变和应力传递机制的影响。

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