Static and dynamic thermo-electro-mechanical analysis of angle-ply hybrid piezoelectric beams using an efficient coupled zigzag theory

Kapuria, S. ; Ahmed, A. ; Dumir, P. C. (2004) Static and dynamic thermo-electro-mechanical analysis of angle-ply hybrid piezoelectric beams using an efficient coupled zigzag theory Composites Science and Technology, 64 (16). pp. 2463-2475. ISSN 0266-3538

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Official URL: http://www.sciencedirect.com/science/article/pii/S...

Related URL: http://dx.doi.org/10.1016/j.compscitech.2004.05.012

Abstract

This work presents static and dynamic electro-thermo-mechanical analysis of angle-ply hybrid piezoelectric beams using a recently developed efficient coupled zigzag theory. In this theory, the displacement approximations account for the thermoelectric strain in the thickness direction and the shear traction-free conditions at the top and the bottom of the beam and the shear continuity conditions at the layer interfaces are exactly satisfied. The theory is assessed against two-dimensional exact piezo-thermo-elasticity solution and compared with the first and third order shear deformation theories. The effect of the span-to-thickness ratio, type of loading and the orientation of the angle-plys on the accuracy of the theories is investigated. It has been concluded that, in general, the new zigzag theory is more accurate than the other theories considered.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:A. Layered Structures; A. Smart Materials; B. Interface; B. Thermo-Mechanical Properties; C. Laminate Theory
ID Code:109818
Deposited On:31 Jan 2018 10:49
Last Modified:31 Jan 2018 10:49

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