Stress Analysis of Axial Compression Steel Reinforced Concrete Column under High-Temperature Fire

Author:

Zheng Shan Suo1,Tao Qing Lin2,Zhang Hong Ren3,Wang Bin1

Affiliation:

1. Xi An University of Architecture and Technology

2. Xi’an University of Architecture and Technology

3. Xi’an University of Technology

Abstract

Based on the fact that building material strength degeneration rules in domestic and overseas are different under the high-temperature fire, with the program ANSYS, the temperature stress distribution of cross-section is obtained and the two results are compared according to stress analysis of numerical simulation on the axial compression steel reinforced concrete column (ACSRCC) under high-temperature fire. Based on the conversion principle of different materials stress and the superposition principle, the numerical calculation method on cross-section stress of ACSRCC under high-temperature fire is proposed, and the calculated results agree with simulation data well. The influences of the concrete coverage thickness and other factors on ACSRCC mechanical properties under high-temperature fire are also discussed in the paper.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference5 articles.

1. Wu Bo: Mechanical properties of reinforced concrete structure by fire, (Science Press, Beijing 2003). (in Chinese).

2. Beeker J M, Bresler B: J. of Structural Division, Vol. 103 (1977), pp.211-224.

3. Xu-dong Shi, Hua-dong Li and Zhen-hai Guo: J. of Building Structures, Vol. 18 (1997), pp.13-22. (in Chinese).

4. A.Φ.: Heat-resistant reinforced concrete structure calculation, (Metallurgical Industry Press, Beijing, 1981). (in Chinese).

5. Xi-lin Lu: submitted to Xi'an University of Architecture and Technology (1991). (in Chinese).

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