Flexural Capacity of Composite Beams Subjected to Fire: Fiber-Based Models and Benchmarking

被引:9
|
作者
Selden, Kristi L. [1 ]
Varma, Amit H. [2 ]
机构
[1] Wiss Janney Elstner & Associates Inc, 10 South LaSalle,Suite 2600, Chicago, IL 60603 USA
[2] Purdue Univ, Lyles Sch Civil Engn, 1040 S River Rd, W Lafayette, IN 47907 USA
基金
美国国家科学基金会;
关键词
Composite beam; Structural fire behavior; Fiber model; Shear stud slip; Partial composite; Interfacial slip; Design;
D O I
10.1007/s10694-016-0565-7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper presents the development and verification of a fiber-based modeling technique to predict the fundamental moment-curvature-temperature (M-I broken vertical bar-T) response of a composite steel beam cross-section in fire conditions. Experimental investigations and 3D finite element models can provide insight to the behavior of composite beams subjected to fire. However, these experimental and numerical approaches can be expensive and cumbersome for conducting extensive parametric studies. Therefore, a simpler 2D fiber-based modeling technique was developed for calculating the flexural behavior and moment capacity of composite steel beams at elevated temperatures. This simpler fiber-based approach can be implemented relatively easily and independently by designers. The 2D fiber-based approach is a simplified model that accounts for temperature dependent (steel and concrete) material properties and the level of slip at the concrete-to-steel interface at elevated temperature. The model does not account for membrane action or rupture of reinforcement, but it can be used to calculate the moment capacity of partially composite steel beams without an extensive finite element analysis. The fiber-based model was benchmarked using experimental results from composite steel beam tests subjected to fire, illustrating that it was capable of predicting moment capacity corresponding to the applicable limit state (i.e., full yield of the steel beam, concrete crushing or limiting stud slip) at elevated temperature. The fiber model predictions were typically conservative, and on average, the predicted moment capacity was 95% of the capacity determined from the experimental tests.
引用
收藏
页码:995 / 1014
页数:20
相关论文
共 50 条
  • [21] Flexural Property of Directional Steel Fiber Reinforced Geopolymer Composite Beams
    Zhang W.
    Xie Z.
    Zhou H.
    Xie, Ziling (xiezl@wzu.edu.cn), 1600, Tongji University (24): : 1307 - 1314
  • [22] Flexural Behavior of Fiber-Reinforced SCC for Monolithic and Composite Beams
    Kassimi, Fodhil
    El-Sayed, Ahmed Kamal
    Khayat, Kamal Henri
    JOURNAL OF ADVANCED CONCRETE TECHNOLOGY, 2021, 19 (08) : 937 - 949
  • [23] Improved BPNN models based on different algorithms to predict the flexural capacity of corroded RC beams
    Wang, Huxiang
    Bao, Chao
    Ma, Xiaotong
    Alshaikh, Ibrahim M. H.
    Al-Gaboby, Ziyad
    Cao, Jixing
    STRUCTURES, 2025, 71
  • [24] Evaluation of the flexural strength of carbon fiber- and quartz fiber-based posts.
    Valandro, L. F.
    Neisser, M. P.
    Lopes, A. G.
    Scotti, R.
    Andreatta Filho, O. D.
    Bottino, M. A.
    JOURNAL OF DENTAL RESEARCH, 2003, 82 : B344 - B344
  • [25] Experimental and analytical behavior of carbon fiber-based rods as flexural reinforcement
    Thiagarajan, G
    JOURNAL OF COMPOSITES FOR CONSTRUCTION, 2003, 7 (01) : 64 - 72
  • [26] Flexural behavior of steel-MPC based high performance concrete composite beams subjected to hogging moments
    Zhang, Jing
    Li, Tao
    Hu, Xiamin
    Gong, Shuhong
    Hong, Wan
    Feng, Jianmin
    ENGINEERING STRUCTURES, 2023, 276
  • [27] Flexural behaviour of axially and rotationally restrained cold-formed steel beams subjected to fire
    Laim, Luis
    Rodrigues, Joao Paulo C.
    Craveiro, Helder D.
    THIN-WALLED STRUCTURES, 2016, 98 : 39 - 47
  • [28] Bottle beam generation from fiber-based Bessel beams
    Chen, Yuhao
    Yan, Lu
    Steinvurzel, Paul
    Ramachandran, Siddharth
    2012 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2012,
  • [29] Fiber-based mode converter for generating optical vortex beams
    Ruishan Chen
    Jinghao Wang
    Xiaoqiang Zhang
    Junna Yao
    Hai Ming
    Anting Wang
    Opto-Electronic Advances, 2018, 1 (07) : 4 - 10
  • [30] Fiber-based mode converter for generating optical vortex beams
    Chen, Ruishan
    Wang, Jinghao
    Zhang, Xiaoqiang
    Yao, Junna
    Ming, Hai
    Wang, Anting
    OPTO-ELECTRONIC ADVANCES, 2018, 1 (07): : 1 - 7