Zhangfeng Zhu | Civil engineering | Best Researcher Award

Assoc. Prof. Dr Zhangfeng Zhu | Civil engineering | Best Researcher Award

Assoc. Prof. Dr at Nanjing Tech University China

Zhu Zhangfeng (b. Nov 1985) is an Associate Professor and Ph.D. holder at Nanjing University of Technology. He is a visiting scholar at the National University of Singapore, specializing in prefabricated structures and civil engineering construction. With several roles in committees and innovation alliances, Zhu actively contributes to advancing the construction sector. 🏗️🎓

Publication Profile

scopus

Education🎓

Zhu obtained his Bachelor’s in Civil Engineering from Nanjing University of Science and Technology (2002–2006) 🏫 and completed his Doctor of Engineering in Structural Engineering at Southeast University (2006–2011)

Experience👨‍🏫

Zhu worked as a lecturer at Nanjing University of Technology (2011–2017) , followed by a visiting scholar position at the National University of Singapore (2017). He is currently an Associate Professor at Nanjing University of Technology since 2017

Awards and Honors💡

Zhu received the first prize in Jiangsu Provincial Science and Technology Awards 🏆, and was selected for the “Six Major Talent Peaks” project funding 🏅. He also earned four invention patents for his contributions

Research Focus🏫

Zhu’s research focuses on prefabricated building structural systems 🏗️ and complex civil engineering construction technologies ⚙️, aiming to enhance sustainability and innovation in the construction industry.

Publications 📖

Tensile Properties of Grout-Anchored Rebar Butt Connection for Precast Concrete Component

Published in: Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology

Authors: Zhu, Z., Guo, Z., Huang, D., Chen, Y.

Published in: 2025, 57(1), pp. 120-127

Focuses on the tensile properties of grout-anchored rebar butt connections for precast concrete components, crucial for enhancing the stability and strength of precast systems.

2. Experimental Research on Seismic Performance of Hybrid Connected Prefabricated Composite Columns

Published in: Materials and Structures/Materiaux et Constructions

Authors: Zhu, Z., Jin, P., Zheng, Y., Zhang, B.

Published in: 2024, 57(6), 138

Examines the seismic performance of hybrid connected prefabricated composite columns, emphasizing earthquake resistance in modern construction.

3. Experimental Research on Interfacial Bonding Performance of High-Strength Steel Pipe and Surrounding Concrete/Grout for Assembled Composite Columns

Published in: Structural Concrete

Authors: Zhu, Z., Wang, J.

Published in: 2023, 24(6), pp. 7103-7115

Investigates the interfacial bonding between high-strength steel pipes and concrete or grout, enhancing composite column behavior.

4. Experiment on Seismic Performance of Post-Tensioned Strengthened Core-Pipe Connected Precast Composite Columns

Published in: Hunan Daxue Xuebao/Journal of Hunan University Natural Sciences

Authors: Zhu, Z., Wang, J., Xu, K.

Published in: 2023, 50(11), pp. 110-119

Analyzes the seismic performance of post-tensioned reinforced core-pipe connections in precast composite columns.

5. Experimental Research on the Joint Seismic Performance of Prefabricated Entrance in Subway Station

Published in: Journal of Railway Engineering Society

Authors: Xu, J., Pan, Z., Xu, J., Fang, C., Zhu, Z.

Published in: 2022, 39(8), pp. 87-92

Focuses on the seismic performance of prefabricated entrances in subway stations, ensuring structural safety.

6. Shear Performance of the Interfaces for Precast Concrete Shear Wall Components by Novel Preparation Method

Published in: Structural Concrete

Authors: Zhu, Z., Guo, Z., Lu, H.

Published in: 2022, 23(2), pp. 1036-1048

Investigates the shear performance of precast concrete shear wall interfaces, utilizing innovative preparation methods.

7. Shear Bearing Performance of Precast Concrete Component Interface by Bubble Film

Published in: China Civil Engineering Journal

Authors: Zhu, Z., Guo, Z., Liu, J., Luan, L.

Published in: 2020, 53(7), pp. 21-27

Studies shear bearing performance using bubble film for precast concrete interfaces.

8. Aseismic Experimental Research on I-Shaped Precast Concrete Shear Walls with Vertical and Horizontal Joints

Published in: Engineering Mechanics

Authors: Zhu, Z.-F., Guo, Z.-X.

Published in: 2019, 36(3), pp. 139-148

Evaluates the seismic behavior of I-shaped precast concrete shear walls with vertical and horizontal joints, enhancing earthquake resilience.

9. Evaluation of Load–Deformation Behavior of Reinforced Concrete Shear Walls with Continuous or Lap-Spliced Bars in Plastic Hinge Zone

Published in: Advances in Structural Engineering

Authors: Zhi, Q., Zhou, B., Zhu, Z., Guo, Z.

Published in: 2019, 22(3), pp. 722-736

Focuses on evaluating the load-deformation behavior of reinforced concrete shear walls, especially in plastic hinge zones.

10. Seismic Behavior of Precast Concrete Shear Walls with Different Confined Boundary Elements

Published in: KSCE Journal of Civil Engineering

Authors: Zhu, Z., Guo, Z.

Published in: 2019, 23(2), pp. 7

Studies the seismic performance of precast concrete shear walls with various confined boundary elements for improved earthquake resistance.

 

Conclusion

Zhu Zhangfeng’s contributions to civil engineering and construction are remarkable, and his achievements in structural innovation, sustainability, and safety make him a highly suitable candidate for the Best Researcher Award. His continuous pursuit of excellence in both research and practical applications demonstrates his potential for shaping the future of the industry. With further international collaboration and a broader focus on the socio-economic impacts of his work, he could take his contributions to even greater heights. Overall, his research excellence and forward-thinking approach make him an ideal candidate for this prestigious recognition.

Weifeng Sun | Structural Health Monitoring | Best Researcher Award

Mr. Weifeng Sun | Structural Health Monitoring | Best Researcher Award

Lecturer Chang’an University, China

Weifeng Sun 👨‍🔬, a doctor of engineering, hails from Yanling County, Henan Province. He is a lecturer and master’s supervisor at Chang’an University’s College of Geology and Engineering 🏫. As a member of the Chinese Society for Rock Mechanics and Engineering 🧗‍♂️ and the Communist Party of China 🇨🇳, he has published nearly 20 academic papers 📚 and holds over 40 patents and software copyrights 💻. His work is focused on geological engineering, both in teaching and research

Publication Profile

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Education 🎓

Weifeng Sun completed his Doctorate in Engineering 🎓 with a focus on geotechnical materials and geological engineering 📊. His educational journey involved rigorous research 🧠 into the deformation and failure mechanisms of geotechnical materials, stability of soil slopes 🌱, and intelligent monitoring technologies 🖥️. His academic foundation provides a strong framework for his innovative research into geotechnical engineering 🔨, making significant contributions to both academia and practical applications in the field 🏗️.

Experience 👨‍🏫

Dr. Weifeng Sun’s professional journey spans across teaching 📘 and research 🔬 at the College of Geology and Engineering, Chang’an University 🏛️. As a lecturer and master’s supervisor 👨‍🏫, he mentors aspiring geologists and engineers while advancing his research in geotechnical engineering 🏞️. With 20+ publications and over 40 patents and software copyrights 📝, he is actively involved in cutting-edge research on geological materials and monitoring systems. His expertise extends to in-situ testing 🧪 and geotechnical project management 🚧.

Awards and Honors 🏆

Dr. Weifeng Sun’s pioneering work in geotechnical engineering has earned him numerous accolades , including recognition for his patents and contributions to the field 📜. As a member of prestigious organizations like the Chinese Society for Rock Mechanics and Engineering 🏅, his innovative research has been acknowledged both nationally and internationally 🌍. His patents 💡 and research papers 📖 reflect his commitment to advancing geotechnical engineering 🏗️, establishing him as a respected figure in the academic and professional communities 🎖️.

Research Focus 🔍.

Weifeng Sun’s research interests lie in the deformation and failure mechanisms of geotechnical materials 🧱, plant-based control on shallow soil slopes stability 🌳, intelligent monitoring for geotechnical structures 🖥️, and in-situ testing of geotechnical materials 🧪. His work aims to improve the safety and efficiency of geotechnical engineering projects 🌐 by leveraging advanced monitoring techniques and developing sustainable engineering solutions 🌱. His multidisciplinary approach addresses both macroscopic and microscopic geotechnical challenges 🔍.

Publications Top Notes

“A Statistical Damage Model for the Soil–Structure Interface Considering Interface Roughness and Soil Shear Area”
Construction and Building Materials, 2024-06
DOI: 10.1016/j.conbuildmat.2024.136606

“Effect of Dry-Wet Cycles and Freeze-Thaw Cycles on the Antierosion Ability of Fiber-Reinforced Loess”
Advances in Materials Science and Engineering, 2021-01
DOI: 10.1155/2021/8834598

“Deformation of Geogrid-Reinforced Segmental Retaining Wall Due to Insufficient Compaction of the Loess Backfill: Case Study in Shaanxi Province, China”
Journal of Performance of Constructed Facilities, 2019-09-18
DOI: 10.1061/(ASCE)CF.1943-5509.0001346

“Failure Models of a Loess Stacked Dam: A Case Study in the Ansai Area (China)”
Bulletin of Engineering Geology and the Environment, 2019-09-06
DOI: 10.1007/s10064-019-01605-z

“A Dry Soil Crushing and Screening Device in Geotechnical Test”
Patent ZL201821116361.2 (2019-01-18)

“A Soil Sensor Installation Device”
Patent ZL201821109384.0 (2019-01-04)

“A Rebar Meter Used to Monitor Force of Anchor Embed in Rock and Soil”
Patent ZL201721579552.8 (2018-08-10)

“A Comprehensive Geotechnical Test Platform for Geological Model Tests of Complex Slopes”
Patent ZL201710480631.1 (2017-08-29)

 

Conclusion

Dr. Weifeng Sun is a highly qualified candidate for the Best Researcher Award due to his substantial contributions to geological engineering, including a robust portfolio of publications and patents. His research addresses critical issues in the field, and his role as an educator further underscores his impact. With improvements in global collaboration and broader dissemination of his work, Dr. Sun could further elevate his stature in the international research community. Overall, his innovative approaches and commitment to advancing geological engineering make him a strong contender for the award.