Behavior Analysis of Circular Steel Tube under Fire

Title
Behavior Analysis of Circular Steel Tube under Fire
Author(s)
서지혜; 원덕희; 박우선
KIOST Author(s)
Seo, Jihye(서지혜)Park, Woo Sun(박우선)
Alternative Author(s)
서지혜; 원덕희; 박우선
Publication Year
2017-03-15
Abstract
Abstract— Recently, a tremendous loss of lives open occurred by collapse of structures under fire. Steel members were applied main member as column and beam in building for good performance and construction efficiency. Fire resistance performance of steel structure was very important because it rapidly changed according to high temperature. Buckling behavior of steel structure under fire was imperative because it can local buckling failure by reduction of structural material properties by temperature. In this paper, Elastic buckling behavior of circular steel tube under fire was investigated through finite element analysis. Parameters for this analysis were selected diameter-thickness ratio, fire exposure area, and fire scenarios. Elastic buckling strength of circular steel tube was rapidly reduced subjected to the fire curve. Local buckling was occurred that this can be lead global failure. When fire resistance design of circular steel tube was performed, buckling behavior must be considered.performance of steel structure was very important because it rapidly changed according to high temperature. Buckling behavior of steel structure under fire was imperative because it can local buckling failure by reduction of structural material properties by temperature. In this paper, Elastic buckling behavior of circular steel tube under fire was investigated through finite element analysis. Parameters for this analysis were selected diameter-thickness ratio, fire exposure area, and fire scenarios. Elastic buckling strength of circular steel tube was rapidly reduced subjected to the fire curve. Local buckling was occurred that this can be lead global failure. When fire resistance design of circular steel tube was performed, buckling behavior must be considered.
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/24201
Bibliographic Citation
2017 4th International Conference on Civil and Urban Engineering (ICCUE 2017), pp.75 - 80, 2017
Publisher
HKCBEES
Type
Conference
Language
English
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