首页> 外文期刊>Journal of intelligent material systems and structures >Free vibration analysis of a porous rotor integrated with regular patterns of circumferentially distributed functionally graded piezoelectric patches on inner and outer surfaces
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Free vibration analysis of a porous rotor integrated with regular patterns of circumferentially distributed functionally graded piezoelectric patches on inner and outer surfaces

机译:与内表面上的周向分布的常规图案集成的多孔转子的自由振动分析在内外表面上和外表面上的常规图案

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摘要

This article studies dynamic characteristics of a novel porous cylindrical hollow rotor based on the first-order shear deformation theory and Hamilton’s principle. The proposed model is made from a core including aluminum with porosity integrated with an arrangement of functionally graded piezoelectric patches placed on its inner and outer surfaces with a customized circumferential orientation. The piezoelectric patches are subjected to applied electric potential as sensor and actuator. The kinematic relations are developed based on the first-order shear deformation theory. Hamilton’s principle is used to derive governing equations of motion with calculation of strain and kinetic energies and external work. Solution procedure of the partial differential equations of motion is developed using Galerkin technique for simple boundary conditions. The accuracy and trueness of this work is justified using a comprehensive comparison with previous valid references. A large parametric study is presented to show influence of significant parameters such as dimensionless geometric parameters, porosity coefficient, angular speed, inhomogeneous index, and characteristics of patches on the mode shapes, natural frequencies, and critical speeds of the structure.
机译:本文研究了基于一阶剪切变形理论和汉密尔顿原理的新型多孔圆柱形空心转子的动态特性。所提出的模型由包括铝合金的芯制成,该孔与具有定制的圆周取向放置在其内部和外表面上的功能渐变压电贴片的布置。压电贴片作为传感器和致动器施加电势。基于一阶剪切变形理论开发了运动关系。汉密尔顿的原则用于推导出致动的动作方程,计算应变和动力学能量和外部工作。使用Galerkin技术开发了局部微分方式的局部微分方程,用于简单的边界条件。使用与以前的有效参考的全面比较进行了合理的本工作的准确性和特性。提出了一个大的参数研究以显示显着参数,例如无量纲的几何参数,孔隙度系数,角速度,不均匀指标和贴片的特性,以及结构的临界速度的斑块的特性。

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