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首页> 外文期刊>Journal of intelligent material systems and structures >Electro-elastic analysis of functionally graded piezoelectric variable thickness cylindrical shells using a first-order electric potential theory and perturbation technique
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Electro-elastic analysis of functionally graded piezoelectric variable thickness cylindrical shells using a first-order electric potential theory and perturbation technique

机译:一种使用一阶电势理论和扰动技术的功能梯度压电可变厚度圆柱壳的电弹性分析

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摘要

In this research, an analytical solution is presented for the functionally graded piezoelectric cylindrical variable wall thickness that is subjected to mechanical and electrical loading. The non-homogeneous distribution of materials is considered as a power function. The first-order electric potential theory, first-order shear deformation theory, and the energy method are used for extracting the system of governing equations. The solution is accomplished using the matched asymptotic expansion method of the perturbation technique. The effects of non-homogeneous properties on the electromechanical are discussed. Since the intensity of variations in the distribution of properties in functionally graded piezoelectric cylinders can be changed using non-homogeneity constant, the electromechanical behavior of the cylinder can be changed by non-homogeneity constant. By reducing the electric or displacement field in functionally graded piezoelectric cylinders, de-polarization or loss of piezoelectric properties may be averted. Results indicate that non-homogeneity constant has a significant effect on the electromechanical behavior. However, in some cases, the effects of non-homogeneity constant may be neglected. Comparing these results with those predicted by the plane elasticity theory and finite element method shows good agreement. In fact, the present solution can be considered as an objective function to optimize the properties and behavior.
机译:在该研究中,提出了一种用于经受机械和电荷的功能梯度压电圆柱可变壁厚的分析解决方案。材料的非均匀分布被认为是功率功能。一阶电势理论,一阶剪切变形理论和能量方法用于提取控制方程系统。使用扰动技术的匹配渐近膨胀方法完成解决方案。讨论了非均质性质对机电的影响。由于可以使用非均匀性恒定地改变功能上梯度压电缸中性能分布的变化强度,因此可以通过非均匀性恒定地改变圆筒的机电行为。通过在功能梯度的压电缸中减少电动或位移场,可以避免压电性能的解偏振或损失。结果表明,非均匀性恒定对机电行为具有显着影响。然而,在某些情况下,可能忽略非均匀性常数的影响。将这些结果与由平面弹性理论和有限元方法预测的那些结果显示了良好的一致性。实际上,本解决方案可以被认为是优化性质和行为的目标函数。

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