Research area: Effect of strain rate on the mechanical properties of various construction materials (UHPFRC, HPFRCC, FRCC, Cementless concrete, lightweight concrete, etc.) and microstructural analysis
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : po98166@naver.com
Research area: Construction materials; Dynamic behavior; Fracture mechanics; Fiber reinforcements; Discrete modeling
Address : Hanyang University, 512 Jae Sung Civil Engineering Building
E-mail : jwp1021@hanyang.ac.kr
Research area: Self-sensing concrete, Self-sensing rapid repair materials, Crack repair quality inspection using electrical resistance
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : rlaxodrn1117@naver.com
Research area: Cementless UHPC, Impact loading
Address : Hanyang University, 512 Jae Sung Civil Engineering Building
E-mail : wherty1245@naver.com
Research area: Self-sensing concrete
Address : Hanyang University, 512 Jae Sung Civil Engineering Building
E-mail : thanhtuxdgt@gmail.com
Research area: Auxetic meta-concrete, auxetic meta-structure, ultra-high performance concrete
Address : Hanyang University, 512 Jae Sung Civil Engineering Building
E-mail : vothanhson.eng@gmail.com
Research area: Cement hydration simulation; predicting mechanical properties of paste, mortar, and concrete using a lattice-particle based finite-element approach.
Address : Hanyang University, 512 Jae Sung Civil Engineering Building
E-mail : tanduy05081998@gmail.com
Research area: Smart Ultra High Performance Concrete (S-UHPC), self-stress sensing response of S-UHPC
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : dariyaibragimova8@gmail.com
Research area: Ultra high performance lightweight concrete, ultra high performance fiber reinforced concrete
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : iamalexchung@naver.com
Research area:
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : sellyjy77@naver.com
Address : Hanyang University, 514 Jae Sung Civil Engineering Building
E-mail : rim0271@naver.com
Doctoral dissertation: Innovative Methods for Evaluating Stress, Crack, and Repair States of Concrete Structures Using Electrical Resistance
Doctoral dissertation: Uniaxial stress versus strain responses of concrete at high strain rates
Doctoral dissertation: Development of Self-Supporting Re.g Wall Blocks with Steric Interlocking Capability
Doctoral dissertation: Simulation study on the effect of adding carbon nanotubes on the hydration of cement paste
Doctoral dissertation: Electromagnetic Pulse Shielding Response of Steel Fiber Reinforced Cementitious Composites
Doctoral dissertation: Three-dimensional computer simulation of cementitious composites incorporating reactive nanomaterials
Doctoral dissertation: High strain rate effects on the mechanical resistance of ultra-high-performance fiber-reinforced concrete containing nanoparticles
Doctoral dissertation: Tensile stress versus strain response of textile reinforced cementitious composites
Doctoral dissertation: Evaluation of static and impact behavior of 3D-textile reinforced cementitious composites
Doctoral dissertation: Electrical resistivity of steel fibers embedded in mortar matrices during fiber pullout
Doctoral dissertation: Electro-mechanical response of self-sensing fiber-reinforced cementitious composites (SSFRCs)
Doctoral dissertation: Loading rate effects on interfacial bond characteristics between steel fiber and cement based matrix
Doctoral dissertation: Shear resistance of ultra-high-performance fiber-reinforced concrete at high strain rates
Doctoral dissertation: Investigating the impact resistance of ultra-high-performance fiber reinforced concrete at high strain rate using strain energy
Doctoral dissertation: Direct Tensile Behavior of Ultra-High-Performance Fiber-Rienforced Concrete Subjected to Impact Loading
Doctoral dissertation: Size dependent mechanical behavior of ultra-high-performance fiber-reinforced concrete
Doctoral dissertation: Investigating tensile behavior of high performance fiber reinforced comentitious composites under impact using strain energy frame impact machine.
Dissertation: A study on factors influencing the multi-fiber pullout resistance between steel fiber and cement matrix
Dissertation: Effects of aggregate surface condition on the interfacial properties between aggregate and injected quick-hardening mortar
Dissertation: Pullout behavior of shape memory alloy fibers embedded in mortar matrices
Dissertation: Investigating multiple micro-cracking behavior of UHPFRCs by using digital image correlation technique
Dissertation: Effect of size and contents of sand grain on the mechanical behavior of HPFRCCs with deformed steel fiber
Dissertation: Mechanical Behavior of Fiber Reinforced Concrete for Containment Building of Nuclear Power Plants
Dissertation: The change of electric resistivity of HPFRCC in tension