Experimental study on the flexural behavior of flat steel – concrete composite beam

Author:

Cao Xianlei12,Cheng Chao1,Wang Min1,Zhong Wen1,Kong Zhengyi1,Chen Zongping2

Affiliation:

1. Department of Civil Engineering, Anhui University of Technology, Ma’anshan, 243-032, China.

2. Guangxi Key Laboratory of Disaster Prevention and Engineering Safety, Guangxi University, 530-004, China.

Abstract

In this study, a new type of composite beam named flat steel – concrete composite beam is suggested for the rapid development of assembly structures. Experiments were performed on seven flat steel – concrete composite beams and one traditional steel–concrete composite beam to investigate their flexural behaviors. The failure mode of bending-shear fracture for the flat steel – concrete composite beam is found while the traditional steel–concrete composite beam fails by compression-bending fracture. The plane cross-section assumption is applicable to the flat steel – concrete composite beam. Compared with the traditional steel–concrete composite beam, the flat steel – concrete composite beam exhibits higher flexural stiffness, higher moment capacity, and higher ductility capacity. Based on the design theory of the traditional steel–concrete composite beam, simplified models for estimating the flexural stiffness and ultimate moment capacity of the flat steel – concrete composite beam are proposed, and they agree well with the test data.

Publisher

Canadian Science Publishing

Subject

General Environmental Science,Civil and Structural Engineering

Reference29 articles.

1. Service and Ultimate Behaviour of Slim Floor Beams: An Experimental Study

2. Composite slim floor beams with innovative shear connections

3. China National Standard. 2003. Standard for test method of mechanical properties of ordinary concrete. GB T50081-2002. China National Industrial Construction Press, Beijing.

4. China National Standard. 2004. Steel and steel products-location and preparation of test pieces for mechanical testing. GB T2975-1998. China Planning Press, Beijing.

5. China National Standard. 2016. Code for design of composite structures. JGJ 138 - 2016. China Construction Industry Press, Beijing.

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