Title :
Three-dimensional exact solution Concrete Filled Steel Column under pressure composite to thermal load
Author :
Huang Hui ; Jiang Yong ; Xiaojing, Zhao
Author_Institution :
Dept. of Constr. Design, China Zhong Tie Major Bridge Eng. Group, Wuhan, China
Abstract :
As main load-bearing member, Concreted Filled Steel Column (CFSC) has been widely used in buildings and bridge structures. Research on bearing capacity of CFSC, especially under temperature load, was carried out mainly on the basis of experiments. In this paper, inverse method of elastic theory is adopted to introduce Airy stress function for study on CFSC under axial pressure and temperature load. And the analytical expressions for stress of steel tube and concrete, interaction forces between them, and internal temperature of the column are obtained. Based on the abovementioned expressions, it is concluded that temperature, radial stress, and normal stress in the same plane of CFSC are functions of the radius. And the internal temperature can only be affected by thermal conductivity coefficient of steel tube and concrete; the radial stress and normal stress are affected not only by the stiffness, but also by the thermal conductivity coefficient of steel and concrete.
Keywords :
bridges (structures); concrete; elasticity; inverse problems; steel; structural engineering; thermal conductivity; thermal stresses; airy stress function; axial pressure; bearing capacity; bridge structures; buildings; concrete stress; elastic theory; inverse method; pressure composite; steel tube stress; stiffness; temperature load; thermal conductivity coefficient; thermal load; three-dimensional exact solution concrete filled steel column; Artificial intelligence; Silicon; Concrete Filled Steel Column; elastic analysis; stress; temperature;
Conference_Titel :
Mechanical and Electrical Technology (ICMET), 2010 2nd International Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-8100-2
Electronic_ISBN :
978-1-4244-8102-6
DOI :
10.1109/ICMET.2010.5598406