Wei, Xing and Shariati, M. and Zandi, Y. and Pei, Shiling and Jin, Zhibin and Gharachurlu, S. and Abdullahi, M. M. and Tahir, M. M. and Khorami, M. (2018) Distribution of shear force in perforated shear connectors. Steel and Composite Structures, 27 (3). pp. 389-399. ISSN 1229-9367
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Official URL: http://dx.doi.org/10.12989/scs.2018.27.3.389
Abstract
A perforated shear connector group is commonly used to transfer shear in steel-concrete composite structures when the traditional shear stud connection is not strong enough. The multi-hole perforated shear connector demonstrates a more complicated behavior than the single connector. The internal force distribution in a specific multi-hole perforated shear connector group has not been thoroughly studied. This study focuses on the load-carrying capacity and shear force distribution of multi-hole perforated shear connectors in steel-concrete composite structures. ANSYS is used to develop a three-dimensional finite element model to simulate the behavior of multi-hole perforated connectors. Material and geometric nonlinearities are considered in the model to identify the failure modes, ultimate strength, and load-slip behavior of the connection. A three-layer model is introduced and a closed-form solution for the shear force distribution is developed to facilitate design calculations. The shear force distribution curve of the multi-hole shear connector is catenary, and the efficiency coefficient must be considered in different limit states.
Item Type: | Article |
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Uncontrolled Keywords: | Efficiency coefficient, Mechanical model |
Subjects: | T Technology > TA Engineering (General). Civil engineering (General) |
Divisions: | Civil Engineering |
ID Code: | 85064 |
Deposited By: | Widya Wahid |
Deposited On: | 29 Feb 2020 13:39 |
Last Modified: | 29 Feb 2020 13:39 |
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