Nonlinear Analysis of Mechanical Property for Steel Reinforced Concrete Composite Frame Structure(PDF)
《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]
- Issue:
- 2014年04期
- Page:
- 87-96
- Research Field:
- Publishing date:
Info
- Title:
- Nonlinear Analysis of Mechanical Property for Steel Reinforced Concrete Composite Frame Structure
- Author(s):
- Nonlinear Analysis of Mechanical Property for Steel Reinforced Concrete Composite Frame Structure
- School of Civil Science and Engineering, Yangzhou University
- Keywords:
- steel reinforced concrete beam; anglesteel concrete column; finite element; mechanical property; ultimate load
- PACS:
- -
- DOI:
- -
- Abstract:
- A finite element model (FEM) to simulate the composite frame structure composed of prestressed (nonprestressed) steel reinforced concrete beam and anglesteel concrete column under horizontal loading was developed by considering concrete damage, material nonlinearity and element type, and the mechanical properties acquired from FEM were compared to test results. According to FEM, the whole force process of composite frame structure under horizontal loading was studied, and the primary factors affecting the mechanical property of the frame structure were analyzed. The results show that the plastic hinges occur at the beam ends and column bottoms, and the failure mechanism of “strongcolumn and weak column” can be reached. Furthermore, with increasing of the axial compression ratio, the ultimate load of horizontal loaddisplacement curves increases firstly and then decreases, corresponding to the displacements decrease and ductilities depress; with increasing of slenderness ratio, the stiffness of structure decreases, the ultimate load reduces and the ductility gets better.
Last Update: 2014-12-18