Effects of porosity distribution and piezoelectric layers on natural frequencies and unsteady aerodynamic pressure of smart thick porous plates

IF 2.8 4区 工程技术 Q1 ACOUSTICS Journal of Low Frequency Noise Vibration and Active Control Pub Date : 2023-05-11 DOI:10.1177/14613484231164970
R. Bahaadini, Mojtaba Javaheri, K. Majidi-Mozafari, Mohammad Azimi-Nejad
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Abstract

In this paper, the effects of porosity distribution and piezoelectric layers on the natural frequencies and flutter aerodynamic pressure of smart thick porous plates in supersonic airflow are studied. Based on the third-order shear deformation plate theory and first-order piston theory, thick functionally graded porous plates embedded by piezoelectric layers are investigated. The effective porous material properties, such as Young’s modulus and mass density are considered to vary along the thickness direction. The aeroelastic governing equations of motion are obtained using Hamilton’s principle and Maxwell’s equation. By applying Galerkin’s approach, the partial differential governing equations are transformed into a set of ordinary differential equations. The results indicate that the unsteady aerodynamic pressure and natural frequencies decrease as the porosity coefficient increases. Furthermore, the symmetric porosity distribution predicts the highest unsteady aerodynamic pressure and natural frequencies for porous plates. Besides, the results show that the porous plate enclosed by piezoelectric layers in open circuit condition has higher flutter aerodynamic pressure and natural frequencies than the similar plate in closed circuit condition.
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孔隙率分布和压电层对智能厚多孔板固有频率和非定常气动压力的影响
本文研究了超声速气流中多孔智能厚板的孔隙率分布和压电层对其固有频率和颤振气动压力的影响。基于三阶剪切变形板理论和一阶活塞理论,对压电层嵌入的厚功能梯度多孔板进行了研究。有效多孔材料性能,如杨氏模量和质量密度被认为是沿厚度方向变化的。利用哈密顿原理和麦克斯韦方程得到气动弹性运动控制方程。利用伽辽金方法,将偏微分控制方程转化为一组常微分方程。结果表明,非定常气动力压力和固有频率随孔隙率系数的增大而减小。此外,对称孔隙率分布预测了多孔板的最高非定常气动压力和固有频率。结果表明,在开路状态下,压电层包围多孔板的颤振气动压力和固有频率高于同类板在闭合状态下的颤振气动压力和固有频率。
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来源期刊
CiteScore
4.90
自引率
4.30%
发文量
98
审稿时长
15 weeks
期刊介绍: Journal of Low Frequency Noise, Vibration & Active Control is a peer-reviewed, open access journal, bringing together material which otherwise would be scattered. The journal is the cornerstone of the creation of a unified corpus of knowledge on the subject.
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