Young-Soo Yoon
- Shear strengthening of self-compacting lightweight concrete beams with steel fibers and unbonded prestressing bars. Dans: Engineering Structures, v. 317 (octobre 2024). (2024):
- Strain-hardening effect on the flexural behavior of ultra-high-performance fiber-reinforced concrete beams with steel rebars. Dans: Developments in the Built Environment, v. 17 (mars 2024). (2024):
- Structural benefits of using carbon nanotube reinforced high-strength lightweight concrete beams. Dans: Developments in the Built Environment, v. 16 (décembre 2023). (2023):
- Shear strength of steel fiber reinforced lightweight self-consolidating concrete joints under monotonic and cyclic loading. Dans: Construction and Building Materials, v. 363 (janvier 2023). (2023):
- (2020): Shear Capacity Contribution of Steel Fiber Reinforced High-Strength Concrete Compared with and without Stirrup. Dans: International Journal of Concrete Structures and Materials, v. 14, n. 1 (7 janvier 2020).
- Shrinkage and cracking of restrained ultra-high-performance fiber-reinforced concrete slabs at early age. Dans: Construction and Building Materials, v. 73 (décembre 2014). (2014):
- Size effect in normal- and high-strength amorphous metallic and steel fiber reinforced concrete beams. Dans: Construction and Building Materials, v. 121 (septembre 2016). (2016):
- Rheological concrete creep prediction model for prestressed concrete bridges constructed by the free cantilever method. Dans: Magazine of Concrete Research, v. 63, n. 9 (septembre 2011). (2011):
- Shrinkage characteristics of high-strength concrete for large underground space structures. Dans: Tunnelling and Underground Space Technology, v. 25, n. 2 (mars 2010). (2010):
- Structural performance of ultra-high-performance concrete beams with different steel fibers. Dans: Engineering Structures, v. 102 (novembre 2015). (2015):
- Structural response of steel-fiber-reinforced concrete beams under various loading rates. Dans: Engineering Structures, v. 156 (février 2018). (2018):