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Information Journal Paper

Title

THEORETICAL FORMULATIONS FOR FINITE ELEMENT MODELS OF FUNCTIONALLY GRADED BEAMS WITH PIEZOELECTRIC LAYERS

Pages

  332-345

Abstract

 In this paper an overview of FUNCTIONALLY GRADED MATERIALs and constitutive relations of electro elasticity for three-dimensional deformable solids is presented, and governing equations of the Bernoulli-Euler and Timoshenko beam theories which account for through-thickness power-law variation of a two-constituent material and piezoelectric layers are developed using the principle of virtual displacements. The formulation is based on a power-law variation of the material in the core with piezoelectric layers at the top and bottom. Virtual work statements of the two theories are also developed and their finite element models are presented. The theoretical formulations and finite element models presented herein can be used in the analysis of piezolaminated and adaptive structures such as beams and plates.

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    Cite

    APA: Copy

    REDDY, J.N., DOSHI, S., & MULIANA, A.. (2011). THEORETICAL FORMULATIONS FOR FINITE ELEMENT MODELS OF FUNCTIONALLY GRADED BEAMS WITH PIEZOELECTRIC LAYERS. JOURNAL OF SOLID MECHANICS, 3(4), 332-345. SID. https://sid.ir/paper/319262/en

    Vancouver: Copy

    REDDY J.N., DOSHI S., MULIANA A.. THEORETICAL FORMULATIONS FOR FINITE ELEMENT MODELS OF FUNCTIONALLY GRADED BEAMS WITH PIEZOELECTRIC LAYERS. JOURNAL OF SOLID MECHANICS[Internet]. 2011;3(4):332-345. Available from: https://sid.ir/paper/319262/en

    IEEE: Copy

    J.N. REDDY, S. DOSHI, and A. MULIANA, “THEORETICAL FORMULATIONS FOR FINITE ELEMENT MODELS OF FUNCTIONALLY GRADED BEAMS WITH PIEZOELECTRIC LAYERS,” JOURNAL OF SOLID MECHANICS, vol. 3, no. 4, pp. 332–345, 2011, [Online]. Available: https://sid.ir/paper/319262/en

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