Lumped system model for elastic steel-concrete beams with partial interaction
Abstract
he purpose of this paper is to introduce a numerical model to investigate static response of elastic steel-concrete beams. The numerical model is based on the lumped system with the combination of the transfer matrix and the analog beam methods (ABM). The beams are composed of an upper concrete slab and a lower steel beam, connected at the interface by shear transmitting studs. This type of beam is widely used in constructions especially for highway bridges. The static field and point transfer matrices for the element of the elastic composite beam are derived. The present model is verified and is applied to study the static response of elastic composite beams with intermediate conditions. The intermediate condition is considered as an elastic support with various values of stiffness. The elastic support can be considered rigid when the stiffness has very high values. The influence effect of shear stiffness between the upper slab and lower beam, and the end shear restraint on the static behavior of the composite beams is studied. In addition, the change in the stiffness of the elastic support is also highlighted.
Author(s)
Ahmed Mohamed Ellakany,
Coauthor(s)
Mohamad Nour Eldin Ali
Journal/Conference Information
Multidiscipline Modeling in Materials and Structures,DOI: DOI 10.1108/MMMS-01-2019-0007, ISSN: 1573-6105, Volume: on line, Issue: on line, Pages Range: 1-13,