Abstract
Steel–concrete–steel composite structures with bidirectional thin-walled webs (SCSBWs) are used to build large-scale structures. The presence of steel webs causes notable differences in shear behavior compared to other types of steel–concrete–steel (SCS) composite structures. In this paper, the shear–slip behavior of SCSBWs is studied through experiments and numerical simulations. Particularly, the numerical simulations cover a wide range of variations in the structural parameters to explore the effect of each parameter on the shear–slip behavior. A theoretical model to describe shear–slip in SCSBWs is proposed chiefly by introducing a slip reduction factor. The experimental and numerical data verified the proposed model, which also demonstrated acceptable accuracy and efficiency.
| Original language | English |
|---|---|
| Article number | 107743 |
| Journal | Thin-Walled Structures |
| Volume | 164 |
| DOIs | |
| State | Published - Jul 2021 |
Keywords
- Composite structure
- Mechanical model
- Sandwich structure
- Shear
- Slip failure
- Thin-walled web
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