
ASSESSMENT OF REFINED BEAM THEORIES FOR THE BENDING ANALYSIS OF COMPOSITE BEAM
Author(s) -
R. R. Borkar,
Atteshamuddin S. Sayyad,
Shantaram M. Ghumare
Publication year - 2013
Publication title -
international journal of advanced technology in civil engineering
Language(s) - English
Resource type - Journals
ISSN - 2231-5721
DOI - 10.47893/ijatce.2013.1055
Subject(s) - beam (structure) , virtual work , bending , conjugate beam method , composite number , timoshenko beam theory , bending stiffness , shear (geology) , boundary value problem , pure bending , structural engineering , work (physics) , differential equation , materials science , mathematics , mathematical analysis , finite element method , engineering , composite material , mechanical engineering
In this paper, bending analysis of simply supported composite beam is carried out by using refined beam theories. The theory accounts for the parabolic variation of shear strain through the depth of beam, hence avoid need of shear correction factor. The governing differential equations and boundary conditions are obtained by using the principle of virtual work. A simply supported composite beam subjected to central concentrated load is considered for detail numerical study. The results of displacements and stresses are obtained and found agree well with those obtain by other higher order and lower order theories.