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Cylindrical bending of piezoelectric laminates with a higher order shear and normal deformation theory

机译:具有高阶剪切和法向变形理论的压电层压板的圆柱弯曲

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摘要

An analytical solution, based on a higher order shear and normal deformation theory, is presented for the cylindrical flexure of piezoelectric plates. The primary displacement terms are expanded in thickness coordinate and an exact nature of electric potential is obtained in actuator and sensing layers. The electric potential function is evaluated by solving a second order ordinary differential equation satisfying electric boundary conditions along thickness direction of piezoelectric layer. A unidirectional composite plate attached with distributed actuator and sensor layers is analyzed under electrical and mechanical loading conditions and comparison of results with exact solution is presented. Results for non-piezoelectric plates are also compared with elasticity and other solutions of cylindrical bending.
机译:提出了一种基于高阶剪切和法向变形理论的解析解,用于压电板的圆柱弯曲。主要位移项在厚度坐标中得到扩展,并且在致动器和传感层中获得了准确的电势性质。通过求解满足沿着压电层的厚度方向的电边界条件的二阶常微分方程来评估电位函数。在电气和机械载荷条件下分析了附有分布式执行器和传感器层的单向复合板,并给出了结果与精确解的比较。非压电板的结果也与弹性和圆柱弯曲的其他解决方案进行了比较。

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