SunJae Yoo | Concrete Structure | Best Scholar Award

Dr SunJae Yoo | Concrete Structure | Best Scholar Award

Postdoctoral Researcher, Korea University, South Korea

Dr. Yoo Sun-Jae is a dedicated researcher specializing in advanced materials and structural engineering, particularly focusing on carbon fiber-reinforced polymer (CFRP) bars, ultra-high-performance fiber-reinforced concrete (UHPFRC), and fire-resistant concrete structures. With a Ph.D. from Korea University, his work explores bonding behaviors, impact resistance, and fire-damaged concrete rehabilitation. Dr. Yoo has contributed significantly to the development of lightweight high-strength concrete using nanotechnology and innovative shelter-in-place (SIP) infrastructure. His research combines experimental and analytical approaches to advance sustainable and resilient construction technologies. Recognized for his excellence, he has received awards such as the Best Poster Award from the Korean Society of Civil Engineers and the Best Paper Award from the Journal of the Korean Society of Hazard Mitigation. Dr. Yoo is also an active contributor to international conferences and holds patents for concrete reinforcement technologies.

Professional Profile

Google Scholar

Education 🎓

Dr. Yoo Sun-Jae earned his Bachelor’s (2019), Master’s (2021), and Ph.D. (2025) in Civil Engineering from Korea University, Seoul, Republic of Korea. His Ph.D. dissertation focused on the bond performance of ribbed CFRP bars in UHPFRC after exposure to elevated temperatures, achieving a GPA of 4.23/4.50. During his Master’s, he investigated strengthening methods for two-way slabs under low-velocity impact loading, graduating with a GPA of 3.85/4.50. His academic journey reflects a strong foundation in structural engineering, reinforced by his advisor, Professor Young Soo Yoon. Dr. Yoo’s education has equipped him with expertise in advanced materials, concrete behavior, and innovative construction techniques.

Experience 🔧

Dr. Yoo Sun-Jae has extensive research experience, including projects funded by the National Research Foundation of Korea (NRF) and the Korea Agency for Infrastructure Technology Advancement. His work spans the development of smart strengthening techniques for fire-damaged concrete structures, CFRP reinforcements with zero corrosion, and lightweight high-strength concrete using nanotechnology. He has also contributed to the development of SIP infrastructure and DfMA-based modules for curved bridges. Dr. Yoo’s hands-on experience includes experimental analysis, material development, and structural optimization, making him a versatile researcher in civil engineering and construction materials.

Awards and Honors 🏆

Dr. Yoo Sun-Jae has been recognized for his outstanding contributions to civil engineering. In 2023, he received the Best Poster Award from the Korean Society of Civil Engineers. Earlier, in 2021, he was honored with the Best Paper Award from the Journal of the Korean Society of Hazard Mitigation. His academic excellence was acknowledged in 2018 with the Academic Achievement Excellence Award from Korea University. These accolades highlight his dedication to advancing research in structural engineering and innovative construction materials.

Research Focus 🔍

Dr. Yoo Sun-Jae’s research focuses on the bonding behavior of CFRP bars in UHPFRC, particularly under elevated temperatures and fire conditions. He investigates the impact resistance, fire resistance, and development length of concrete structures reinforced with advanced materials. His work also includes the development of lightweight high-strength concrete using carbon nanotubes (CNTs) and the optimization of SIP infrastructure. Dr. Yoo’s research integrates experimental and analytical approaches to enhance the durability, safety, and sustainability of modern construction materials and techniques.

Publication Top Notes 📚

  1. Flexural behavior of ribbed CFRP bars in UHPFRC beams with lap-splice connection.
  2. Degradation of flexural bond of CFRP bar in UHPFRC after exposure to elevated temperature.
  3. Reinforcing effect of CNT on the microstructure and creep properties of high-strength lightweight concrete.
  4. Flexural bond behavior and development length of ribbed CFRP bars in UHPFRC.
  5. Structural benefits of using carbon nanotube reinforced high-strength lightweight concrete beams.
  6. Bonding behavior and prediction of helically ribbed CFRP bar embedded in UHPC.
  7. Comparative bond-slip response of ribbed CFRP bar to UHPC after exposure to high temperature.
  8. Evaluation of residual bond behavior of CFRP and steel bars embedded in UHPC after elevated temperature.
  9. Effect of design code and evacuation information on strategic location of SIP in light rail stations.
  10. Effect of strengthening methods on two-way slab under low-velocity impact loading.
  11. Effect of internal curing on shrinkage and creep of self-compacting lightweight concrete.
  12. Post-heating flexural performance of UHPFRC members reinforced with ribbed CFRP bar.
  13. Influence of elevated temperature on the flexural behavior of spliced CFRP bars in UHPFRC beams.

Conclusion 🌟

Dr. Yoo Sun-Jae is a highly accomplished researcher whose work in CFRP bars, UHPFRC, and fire-resistant concrete structures has significantly advanced the field of civil engineering. His innovative approaches to material development and structural optimization have earned him numerous accolades and patents. Through his research, Dr. Yoo continues to contribute to the development of sustainable, resilient, and high-performance construction technologies, ensuring safer and more durable infrastructure for the future.

Roberto Alonso Gonzalez Lezcano – Building and Construction – Best Researcher Award 

Roberto Alonso Gonzalez Lezcano - Building and Construction - Best Researcher Award 

CEU San Pablo University - Spain

AUTHOR PROFILE

Scopus
ORCID
Researcher ID

EARLY ACADEMIC PURSUITS

Roberto Alonso Gonzalez Lezcano's academic journey began with a strong foundation in Mechanical and Industrial Engineering at Universidad Tecnológica de Panamá. He furthered his education with postgraduate studies in Mechanical Engineering and Higher Education, laying the groundwork for his future career in academia and research.

PROFESSIONAL ENDEAVORS

With a solid academic background, Roberto Alonso Gonzalez Lezcano embarked on a career dedicated to academia and research. From teaching roles at Universidad Tecnológica de Panamá to tenured professorships at prestigious institutions like Universidad CEU San Pablo, his professional journey reflects a commitment to excellence in the field of Architecture and Design.

CONTRIBUTIONS AND RESEARCH FOCUS

Roberto Alonso Gonzalez Lezcano's research focus lies in the realm of Building and Construction, as evidenced by his numerous projects and contracts. From studying the mechanical behavior of materials to investigating the energy impact of residential building permeability, his contributions have advanced our understanding of structural engineering and architectural design.

IMPACT AND INFLUENCE

Through his tenure as a professor and involvement in research projects, Roberto Alonso Gonzalez Lezcano has made a significant impact on his field. His work has not only contributed to academic knowledge but has also influenced practical applications in the construction industry, shaping the future of building technology.

ACADEMIC CITES

Roberto Alonso Gonzalez Lezcano's research has garnered recognition, as evidenced by his PhD Extraordinary Award and active participation in funded projects. His contributions have likely been cited in academic literature, further solidifying his reputation as a thought leader in Building and Construction.

LEGACY AND FUTURE CONTRIBUTIONS

As Roberto Alonso Gonzalez Lezcano continues his academic and research endeavors, his legacy will be marked by his dedication to advancing the field of Building and Construction. His future contributions hold promise for further innovations in architectural design, structural engineering, and sustainable construction practices.

NOTABLE PUBLICATION

Influence of various fibers on the physico-mechanical properties of a sustainable geopolymer mortar-based on metakaolin and slag  2023 (2)

Iftekhair Bashar – Concrete – Best Researcher Award

Iftekhair Bashar - Concrete - Best Researcher Award

The University of Adelaide - Australia

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Iftekhair Bashar's academic journey began with a Bachelor of Science in Civil Engineering from Khulna University of Engineering and Technology, Bangladesh. He further pursued Master's and Ph.D. degrees, specializing in Structural and Materials Engineering, from the University of Malaya, Malaysia, and the University of Adelaide, Australia, respectively.

PROFESSIONAL ENDEAVORS

Bashar has accumulated extensive experience in the civil engineering field, serving in various capacities as a Structural Engineer, Design Engineer, Project Engineer, and Research Assistant across different organizations in Singapore, Bangladesh, and Australia.

CONTRIBUTIONS AND RESEARCH FOCUS

Bashar's research primarily focuses on concrete materials, with a specific interest in geopolymer concrete, lightweight concrete, and high-performance fibre-reinforced concrete. His contributions include developing environmentally friendly concrete products and investigating the mechanical properties of innovative concrete formulations.

IMPACT AND INFLUENCE

Through his research endeavors, Bashar has contributed to the development of sustainable construction materials and techniques, aiming to reduce the carbon footprint of construction activities. His work has the potential to influence construction practices towards more eco-friendly and efficient solutions.

ACADEMIC CITATIONS

Bashar's research findings have been cited in various academic publications, reflecting the relevance and impact of his work in the field of concrete materials and structural engineering. His contributions contribute to the advancement of knowledge in concrete technology and construction practices.

LEGACY AND FUTURE CONTRIBUTIONS

With patents granted and applications under substantial examination for innovative concrete compositions and construction methods, Bashar's legacy lies in his contributions to sustainable and efficient construction practices. His ongoing research and professional endeavors aim to further enhance the durability, performance, and environmental sustainability of concrete materials and structures.

NOTABLE PUBLICATIONS

Pull-out creep of hooked-end fibre embedded in ultra-high-performance concrete.  2023 (3)