In this paper, a nonlinear static finite element analysis of simply supported smart functionally graded (FG) plates in the presence/absence of the thermal environment has been presented. The substrate FG plate is integrated with the patches of piezoelectric fiber reinforced composite (PFRC) material which act as the distributed actuators of the plate. The material properties of the FG substrate plate are assumed to be temperature dependent and graded along the thickness direction according to a simple power-law distribution in terms of the volume fractions of the constituents. The derivation of this nonlinear thermo-electro-mechanical coupled finite element model is based on the first order shear deformation theory and the Von Karman type geometric nonlinearity. The numerical solutions of the nonlinear equations of the finite element model are obtained by employing the direct iteration method. The numerical illustrations suggest the potential use of the distributed actuator made of the PFRC material for active control of nonlinear deformations of smart FG structures. The effects of volume fraction index of the FG material of the substrate plates and the locations of the PFRC patches on the control authority of the patches are investigated. Emphasis has also been placed on investigating the effect of variation of piezoelectric fiber orientation angle in the PFRC patches on their actuation capability for counteracting the large deflections of FG plates. (C) 2008 Elsevier B.V. All rights reserved.
机构:
Soochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R China
Soochow Univ, Sch Math Sci, Suzhou 215006, Peoples R ChinaSoochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R China
Wang, Wei
Li, Sen
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机构:
Changzhou Inst Technol, Sch Math Sci & Chem Engn, Changzhou 213032, Peoples R ChinaSoochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R China
Li, Sen
Yao, Lin-Quan
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Soochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R ChinaSoochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R China
Yao, Lin-Quan
Yi, Shi-Chao
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机构:
Jiangsu Univ Sci & Technol, Sch Sci, Zhenjiang 212003, Jiangsu, Peoples R ChinaSoochow Univ, Sch Rail Transportat, Suzhou 215131, Peoples R China
机构:
Xi An Jiao Tong Univ, Int Ctr Appl Mech, Sch Aerosp, State Key Lab Strength & Vibrat Mech Struct, Xian 710049, Shaanxi, Peoples R China
City Univ Hong Kong, Dept Architecture & Civil Engn, Kowloon, Hong Kong, Peoples R ChinaXi An Jiao Tong Univ, Int Ctr Appl Mech, Sch Aerosp, State Key Lab Strength & Vibrat Mech Struct, Xian 710049, Shaanxi, Peoples R China
Selim, B. A.
Liu, Zishun
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Xi An Jiao Tong Univ, Int Ctr Appl Mech, Sch Aerosp, State Key Lab Strength & Vibrat Mech Struct, Xian 710049, Shaanxi, Peoples R ChinaXi An Jiao Tong Univ, Int Ctr Appl Mech, Sch Aerosp, State Key Lab Strength & Vibrat Mech Struct, Xian 710049, Shaanxi, Peoples R China
Liu, Zishun
Liew, K. M.
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机构:
City Univ Hong Kong, Dept Architecture & Civil Engn, Kowloon, Hong Kong, Peoples R ChinaXi An Jiao Tong Univ, Int Ctr Appl Mech, Sch Aerosp, State Key Lab Strength & Vibrat Mech Struct, Xian 710049, Shaanxi, Peoples R China
机构:
Department of Mechanical Engineering, Anhui University of Technology, MaanshanDepartment of Mechanical Engineering, Anhui University of Technology, Maanshan
Liu Q.
Liu K.
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机构:
Department of Mechanical Engineering, Anhui University of Technology, MaanshanDepartment of Mechanical Engineering, Anhui University of Technology, Maanshan
Liu K.
Zhang H.
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机构:
Department of Mechanical Engineering, Anhui University of Technology, MaanshanDepartment of Mechanical Engineering, Anhui University of Technology, Maanshan
Zhang H.
Liu T.
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机构:
Department of Mechanical Engineering and Automation, Shanghai University, ShanghaiDepartment of Mechanical Engineering, Anhui University of Technology, Maanshan
Liu T.
Zhendong yu Chongji/Journal of Vibration and Shock,
2024,
43
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: 280
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290