电缆密封套
剪切(地质)
材料科学
结构工程
悬链线
剪切力
有限元法
机械
复合材料
岩土工程
工程类
机械工程
物理
作者
Xing Wei,Mahdi Shariati,Yousef Zandi,Shiling Pei,Zhibin Jin,S. Gharachurlu,Mu’azu Mohammed Abdullahi,Mahmood Md. Tahir,Majid Khorami
出处
期刊:Steel and Composite Structures
[Technopress]
日期:2018-01-01
卷期号:27 (3): 389-399
被引量:28
标识
DOI:10.12989/scs.2018.27.3.389
摘要
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.
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