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篇名
Stability Analysis of Piezoelectric FGM Plate Subjected to Electro-mechanical Loading Using Finite Element Method
作者 Priyanka Jadhav (Priyanka Jadhav)Kamal Bajoria (Kamal Bajoria)
中文摘要
This paper investigates the stability analysis of plates made of functionally graded material (FGM) and subjected to electro-mechanical loading. A FGM plate with piezoelectric actuator and sensor at top and bottom face is considered. The material properties are assumed to be graded along the thickness direction according to simple power-law distribution in terms of the volume fraction of the constituents, while the poisson’s ratio is assumed to be constant. The plate is simply supported at all edges. Using first order shear deformation theory (FOST), the finite element model is derived with von-Karman hypothesis and as a degenerated shell element. The displacement component of the present model is expanded in Taylor’s series in terms of thickness co-ordinate. The governing equilibrium equation is obtained by using principle of minimum potential energy and solution for critical buckling load is obtained by solving eigenvalue problem. The stability analysis of piezoelectric FG plate is carried out to present the effect of power law index and applied mechanical pressure. Results reveal that buckling strength increases with increase in volume fraction. It can also be improved using piezo effects. The present analysis is carried out on newly introduced metal based FGM which is mixture of aluminum and stainless steel which exhibits the corrosion resistance as well as high strength property in single material.
起訖頁 375-391
關鍵詞 Finite element methodpiezoelectric materialfunctionally graded materialfirst order shear deformation theoryeigen value problemelectro-mechanical loading
刊名 國際應用科學與工程學刊  
期數 201312 (11:4期)
出版單位 朝陽科技大學理工學院
該期刊-上一篇 Parameter Fitted Scheme for Singularly Perturbed Delay Differential Equations
該期刊-下一篇 Prediction of Deflection and Stresses of Laminated Composite Plate with an Artificial Neural Network Aid
 

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