Title of article :
Global–local and zigzag-local theories for direct transverse shear stress computation in piezolaminated plates under thermal loading
Author/Authors :
Nath، نويسنده , , Jayanta Kumar and Kapuria، نويسنده , , Santosh، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
12
From page :
158
To page :
169
Abstract :
Two dimensional laminate theories in which the number of primary displacement variables is independent of the number of layers are generally not capable of accurately predicting the transverse stresses in hybrid piezolaminated plates, directly from the constitutive equations. The prediction is particularly poor for the electric potential and thermal loadings. In a recent publication, the authors presented a coupled global–local theory (GLT) with 11 displacement unknowns and a zigzag-local theory (ZLT) with nine unknowns for hybrid plates, with a view to predict the transverse shear stresses accurately under electromechanical loading. It was found that the ZLT yields accurate and superior prediction compared to the GLT. In this study, we extend the two theories for thermal loading and assess their performance in comparison with the three dimensional piezothermoelasticity solution. It is found that, contrary to the electromechanical loading, the GLT performs better than the ZLT for thermal loading, in predicting transverse shear stresses, besides predicting displacements and inplane stresses accurately. The thermoelectric transverse normal strain is accounted for without introducing additional variables. Without this term, the GLT yields much worse results not only for deflection, but also for inplane displacements and stresses.
Keywords :
Smart composite plate , Piezoelectric composite , Laminate theory , Transverse shear stresses , Global–local theory
Journal title :
International Journal of Mechanical Sciences
Serial Year :
2013
Journal title :
International Journal of Mechanical Sciences
Record number :
1423562
Link To Document :
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