| 1 |
Zhang et al. (2014)
|
Theoretical and experimental |
Headed studs |
Fully encased composite columns |
Frontiers of Structural and Civil Engineering |
- |
3.1 |
| 2 |
Mashiri et al. (2017)
|
Theoretical and experimental |
Headed studs and blind bolts |
Push-out tests with concrete slabs |
Structures |
- |
4.3 |
| 3 |
Tian et al. (2018a)
|
Theoretical and experimental |
Headed studs |
Concrete slabs |
Fire Safety Journal |
A2 |
3.3 |
| 4 |
Tian et al. (2018b)
|
Experimental and numerical |
Headed studs |
Concrete slabs |
Fire Safety Journal |
A2 |
3.3 |
| 5 |
Shan and Su (2019)
|
Theoretical and experimental |
Fasteners |
Steel plates |
Engineering Structures |
A1 |
6.4 |
| 6 |
Zhengguo et al. (2020)
|
Experimental |
Headed bolts and thin-walled steel plates |
Thin-walled steel beam with lightweight aggregate concrete |
IOP Conference Series: Earth and Environmental Science |
- |
- |
| 7 |
Yixiang, Zhiheng and Xintang (2020)
|
Experimental |
Headed bolts and thin-walled steel plates |
Thin-walled steel beam with lightweight aggregate concrete |
IOP Conference Series: Earth and Environmental Science |
- |
- |
| 8 |
Lyu et al. (2020)
|
Experimental and numerical |
Headed studs |
Composite steel beams with precast slabs |
Structural Concrete |
A2 |
3.3 |
| 9 |
Tian, Ožbolt and Hofmann (2021)
|
Theoretical and experimental |
Headed studs |
Concrete slabs |
Construction and Building Materials |
A1 |
8.0 |
| 10 |
Tian and Ožbolt (2021)
|
Experimental and numerical |
Headed studs |
Concrete slabs |
Engineering Structures |
A1 |
6.4 |
| 11 |
Mirza et al. (2021)
|
Experimental and numerical |
Headed studs |
Push-out tests with concrete slabs |
Steel and Composite Structures |
A1 |
3.9 |
| 12 |
Ožbolt, Lackovic and Tian (2021)
|
Numerical |
Headed studs |
Concrete slabs |
Fire Safety Journal |
A2 |
3.3 |
| 13 |
Chi, Chi and Huang (2021)
|
Experimental |
Steel bars and steel plates with or without hole |
Precast normal weight concrete and lightweight concrete walls |
Journal of Marine Science and Technology |
A3 |
2.0 |
| 14 |
Xue et al. (2021)
|
Theoretical (review) |
Headed studs, internal vertical or horizontal steel ribs |
Concrete-filled steel tube columns |
Advances in Civil Engineering |
B2 |
1.6 |
| 15 |
Naghipour, Pourniazi and Hasani (2022)
|
Experimental |
Steel plates and bolts |
Concrete-filled cold-formed steel tube columns |
Structures |
- |
4.3 |
| 16 |
Tian et al. (2022)
|
Experimental and numerical |
Headed studs |
Concrete slabs |
Engineering Structures |
A1 |
6.4 |
| 17 |
Mahmood, Allawi and El-Zohairy (2022)
|
Experimental and numerical |
Steel bolts |
Encased pultruded glass fiber-reinforced polymer (GFRP) I-beams with high-strength concrete beams |
Sustainability |
A2 |
3.3 |
| 18 |
Maliji and Yousefpour (2023)
|
Theoretical, experimental, and numerical |
Channel connectors |
Push-out tests with normal-weight and lightweight concrete slabs |
Journal of Structural Engineering |
A1 |
3.9 |
| 19 |
You et al. (2023)
|
Experimental |
Blind bolts and structural bolts |
Steel square hollow section columns |
Journal of Structural Engineering |
A1 |
3.9 |
| 20 |
Maliji and Yousefpour (2024)
|
Theoretical and numerical |
Headed studs |
Steel-concrete composite beams |
Fire Technology |
A3 |
2.4 |
| 21 |
Rezaeicherati et al. (2024)
|
Theoretical and experimental |
Headed studs |
Concrete-filled steel tube columns |
Structures |
- |
4.3 |
| 22 |
Maliji and Yousefpour (2025)
|
Theoretical and numerical |
Channel connectors |
Push-out tests with concrete slabs |
Journal of Structural Engineering |
A1 |
3.9 |
| 23 |
Barclay and Salem (2025)
|
Experimental |
Self-tapping screws |
CLT-concrete composite floor slabs |
Engineering Structures |
A1 |
6.4 |
| 24 |
Feng, Wang and Cunningham (2025)
|
Theoretical, experimental, and numerical |
Self-tapping screws |
Oriented strand board (OSB) and cold-formed steel composite beams |
Engineering Structures |
A1 |
6.4 |
| 25 |
Lou et al. (2025)
|
Theoretical and experimental |
Headed studs |
Steel-concrete composite beams |
Journal of Constructional Steel Research |
A2 |
4.3 |