Yu-Lei Bai
- Shear capacity prediction of carbon-fibre-reinforced polymer mesh fabric (CFRP-MF) stirrups reinforced concrete beams. In: Case Studies in Construction Materials, v. 21 (December 2024). (2024):
- Flexural behavior of hybrid C-PET FRP-strengthened RC beams with U-strip anchorages. In: Engineering Structures, v. 322 (January 2025). (2025):
- Shear strengthening of reinforced concrete beams completely wrapped by large rupture strain (LRS) FRP. In: Engineering Structures, v. 314 (September 2024). (2024):
- Theoretical study on FRP-confined rectangular columns considering rebar buckling. In: Construction and Building Materials, v. 420 (March 2024). (2024):
- Flexural behavior of reinforced concrete beams strengthened with hybrid carbon-PET FRP laminates. In: Construction and Building Materials, v. 411 (January 2024). (2024):
- Seismic behavior of RC square columns strengthened with LRS FRP under high axial load ratio. In: Structures, v. 56 (October 2023). (2023):
- Seismic behaviour of shear critical square RC columns strengthened by large rupture strain FRP. In: Engineering Structures, v. 280 (April 2023). (2023):
- An interpretable ensemble learning method to predict the compressive strength of concrete. In: Structures, v. 46 (December 2022). (2022):
- Large Rupture Strain FRP-Confined Concrete Columns of Different Sizes: Experiments and Stress–Strain Models. In: Journal of Composites for Construction, v. 26, n. 4 (August 2022). (2022):
- Large-rupture-strain (LRS) FRP-confined concrete in square stub columns: Effects of specimen size and assessments of existing models. In: Construction and Building Materials, v. 326 (April 2022). (2022):
- Mechanical behavior of large-rupture-strain (LRS) polyethylene naphthalene fiber bundles at different strain rates and temperatures. In: Construction and Building Materials, v. 297 (August 2021). (2021):
- FE modeling of Non-circular LRS FRP-confined concrete columns. In: Composite Structures, v. 286 (April 2022). (2022):
- A unified stress-strain model for LRS FRP-confined concrete columns with square and circular cross-sections. In: Engineering Structures, v. 255 (March 2022). (2022):
- Simplified plasticity damage model for large rupture strain (LRS) FRP-confined concrete. In: Composite Structures, v. 280 (January 2022). (2022):
- Rate-dependent compressive behavior of concrete confined with Large-Rupture-Strain (LRS) FRP. In: Composite Structures, v. 272 (September 2021). (2021):
- Stiffness-based design-oriented compressive stress-strain model for large-rupture-strain (LRS) FRP-confined concrete. In: Composite Structures, v. 223 (September 2019). (2019):
- Seismic retrofit of exterior RC beam-column joints with bonded CFRP reinforcement: An experimental study. In: Composite Structures, v. 224 (September 2019). (2019):
- Linkage of multi-scale performances of nano-CaCO3 modified ultra-high performance engineered cementitious composites (UHP-ECC). In: Construction and Building Materials, v. 234 (February 2020). (2020):
- Quasi-static and dynamic tensile properties of large-rupture-strain (LRS) polyethylene terephthalate fiber bundle. In: Construction and Building Materials, v. 232 (January 2020). (2020):
- Monotonic Stress–Strain Behavior of Steel Rebars Embedded in FRP-Confined Concrete Including Buckling. In: Journal of Composites for Construction, v. 21, n. 5 (October 2017). (2017):