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    Control of Nonlinear Electro/Elastic Beam and Plate Systems (Finite Element Formulation and Analysis)

    Source: Journal of Vibration and Acoustics:;2004:;volume( 126 ):;issue: 001::page 63
    Author:
    D. W. Wang
    ,
    H.-J. Lee
    ,
    H. S. Tzou
    DOI: 10.1115/1.1640357
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Adaptive structures involving large imposed deformation often go beyond the boundary of linear theory and they should be treated as “nonlinear” structures. A generic nonlinear finite element formulation for vibration sensing and control analysis of laminated electro/elastic nonlinear shell structures is derived based on the virtual work principle. A generic curved triangular piezoelectric shell element is proposed based on the layerwise constant shear angle theory. The dynamic system equations, equations of electric potential output and feedback control force defined in a matrix form are derived. The modified Newton-Raphson method is adopted for nonlinear dynamic analysis of large and complex piezoelectric/elastic/control structures. A finite element code for vibration sensing and control analysis of nonlinear active piezoelectric structronic systems is developed. The developed piezoelectric shell element and finite element code are validated and then applied to control analysis of flexible electro-elastic (piezoelectric/elastic) structural systems. Vibration control of constant-curvature electro/elastic beam and plate systems are studied. Time-history responses of free and controlled nonlinear electro/elastic beam and plate systems are presented and nonlinear effects discussed.
    keyword(s): Stress , Finite element analysis , Equations , Shells , Dynamic analysis , Electric potential , Force , Vibration control AND Displacement ,
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      Control of Nonlinear Electro/Elastic Beam and Plate Systems (Finite Element Formulation and Analysis)

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/131090
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    • Journal of Vibration and Acoustics

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    contributor authorD. W. Wang
    contributor authorH.-J. Lee
    contributor authorH. S. Tzou
    date accessioned2017-05-09T00:14:50Z
    date available2017-05-09T00:14:50Z
    date copyrightJanuary, 2004
    date issued2004
    identifier issn1048-9002
    identifier otherJVACEK-28868#63_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/131090
    description abstractAdaptive structures involving large imposed deformation often go beyond the boundary of linear theory and they should be treated as “nonlinear” structures. A generic nonlinear finite element formulation for vibration sensing and control analysis of laminated electro/elastic nonlinear shell structures is derived based on the virtual work principle. A generic curved triangular piezoelectric shell element is proposed based on the layerwise constant shear angle theory. The dynamic system equations, equations of electric potential output and feedback control force defined in a matrix form are derived. The modified Newton-Raphson method is adopted for nonlinear dynamic analysis of large and complex piezoelectric/elastic/control structures. A finite element code for vibration sensing and control analysis of nonlinear active piezoelectric structronic systems is developed. The developed piezoelectric shell element and finite element code are validated and then applied to control analysis of flexible electro-elastic (piezoelectric/elastic) structural systems. Vibration control of constant-curvature electro/elastic beam and plate systems are studied. Time-history responses of free and controlled nonlinear electro/elastic beam and plate systems are presented and nonlinear effects discussed.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleControl of Nonlinear Electro/Elastic Beam and Plate Systems (Finite Element Formulation and Analysis)
    typeJournal Paper
    journal volume126
    journal issue1
    journal titleJournal of Vibration and Acoustics
    identifier doi10.1115/1.1640357
    journal fristpage63
    journal lastpage70
    identifier eissn1528-8927
    keywordsStress
    keywordsFinite element analysis
    keywordsEquations
    keywordsShells
    keywordsDynamic analysis
    keywordsElectric potential
    keywordsForce
    keywordsVibration control AND Displacement
    treeJournal of Vibration and Acoustics:;2004:;volume( 126 ):;issue: 001
    contenttypeFulltext
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