Journal article

Static behaviour of functionally graded sandwich beams using a quasi-3D theory

TP Vo, HT Thai, TK Nguyen, F Inam, J Lee

Composites Part B Engineering | ELSEVIER SCI LTD | Published : 2015

Abstract

This paper presents static behaviour of functionally graded (FG) sandwich beams by using a quasi-3D theory, which includes both shear deformation and thickness stretching effects. Various symmetric and non-symmetric sandwich beams with FG material in the core or skins under the uniformly distributed load are considered. Finite element model (FEM) and Navier solutions are developed to determine the displacement and stresses of FG sandwich beams for various power-law index, skin-core-skin thickness ratios and boundary conditions. Numerical results are compared with those predicted by other theories to show the effects of shear deformation and thickness stretching on displacement and stresses.

University of Melbourne Researchers

Grants

Awarded by Northumbria University


Funding Acknowledgements

Authors gratefully acknowledge research support fund by UoA16 from Northumbria University and by the Basic Research Laboratory Program of the he National Research Foundation of Korea (NRF) funded by the Ministry of Education, Science and Technology (2010-0019373 and 2012R1A2A1A01007450).