TY - JOUR
T1 - Effect of visco-Pasternak foundation on thermo-mechanical bending response of anisotropic thick laminated composite plates
AU - Bounouara, Fatima
AU - Sadoun, Mohamed
AU - Saleh, Mahmoud Mohamed Selim
AU - Chikh, Abdelbaki
AU - Bousahla, Abdelmoumen Anis
AU - Kaci, Abdelhakim
AU - Bourada, Fouad
AU - Tounsi, Abdeldjebbar
AU - Tounsi, Abdelouahed
N1 - Publisher Copyright:
Copyright © 2023 Techno-Press, Ltd.
PY - 2023/6/25
Y1 - 2023/6/25
N2 - This article investigates the static thermo-mechanical response of anisotropic thick laminated composite plates on Visco-¬Pasternak foundations under various thermal load conditions (linear, non-linear, and uniform) along the transverse direction (thickness) of the plate, while keeping the mechanical load constant. The governing equations, which represent the thermo-mechanical behavior of the composite plate, are derived from the principle of virtual displacements. Using Navier's type solution, these equations are solved for the composite plate with simply supported condition. The Visco-¬Pasternak foundation type is included by considering the impact of the damping on the classical foundation model, which is modeled by Winkler’s linear modulus and Pasternak’s shear modulus. The excellent accuracy of the present solution is confirmed by comparing the results with those available in the literature. The study investigates the impact of geometric ratios, thermal expansion coefficient ratio, damping coefficient and foundation parameters on the thermo-mechanical flexural response of the composite plate. Overall, this article provides insights into the behavior of composite plates on visco-Pasternak foundations and may be useful for designing and analyzing composite structures in practical applications.
AB - This article investigates the static thermo-mechanical response of anisotropic thick laminated composite plates on Visco-¬Pasternak foundations under various thermal load conditions (linear, non-linear, and uniform) along the transverse direction (thickness) of the plate, while keeping the mechanical load constant. The governing equations, which represent the thermo-mechanical behavior of the composite plate, are derived from the principle of virtual displacements. Using Navier's type solution, these equations are solved for the composite plate with simply supported condition. The Visco-¬Pasternak foundation type is included by considering the impact of the damping on the classical foundation model, which is modeled by Winkler’s linear modulus and Pasternak’s shear modulus. The excellent accuracy of the present solution is confirmed by comparing the results with those available in the literature. The study investigates the impact of geometric ratios, thermal expansion coefficient ratio, damping coefficient and foundation parameters on the thermo-mechanical flexural response of the composite plate. Overall, this article provides insights into the behavior of composite plates on visco-Pasternak foundations and may be useful for designing and analyzing composite structures in practical applications.
KW - composite laminates
KW - thermo-mechanical load
KW - visco-Pasternak foundations
UR - http://www.scopus.com/inward/record.url?scp=85165620901&partnerID=8YFLogxK
U2 - 10.12989/scs.2023.47.6.693
DO - 10.12989/scs.2023.47.6.693
M3 - Article
AN - SCOPUS:85165620901
SN - 1229-9367
VL - 47
SP - 693
EP - 707
JO - Steel and Composite Structures
JF - Steel and Composite Structures
IS - 6
ER -