Zheyi Zhang | Impact energy absorption of composite structures | Best Researcher Award

Dr. Zheyi Zhang | Impact energy absorption of composite structures | Best Researcher Award

Lecturer at Hebei University of Technology, China

Zheyi Zhang is a dynamic and innovative academic currently serving as a Lecturer at the School of Mechanical Engineering, Hebei University of Technology. His professional trajectory is marked by a persistent commitment to advancing crashworthiness design and composite material engineering. With a solid foundation in mechanical engineering, Dr. Zhang has contributed significantly to the study of structural safety and optimization. His research integrates experimental analysis and numerical simulation to solve complex engineering problems related to material behavior and structural integrity under impact conditions. His academic career has been characterized by a strong publication record, active collaboration, and a dedication to the practical application of research in real-world scenarios.

Profile

Scopus

Education

Dr. Zhang’s academic foundation is built on a progressive journey through some of China’s reputable institutions. He earned his Bachelor’s and Master’s degrees in Mechanical Engineering from Yanshan University in 2013 and 2016, respectively. His early academic achievements laid the groundwork for his doctoral studies at Hunan University, where he received his Ph.D. in 2020. This doctoral work refined his expertise in crashworthiness and composite structures, combining theoretical modeling with hands-on experimentation. The multidisciplinary training he received across these institutions helped shape his research philosophy and enabled him to work across the boundaries of material science and structural mechanics.

Experience

Since 2020, Dr. Zhang has been a Lecturer at Hebei University of Technology, where he has made substantial contributions to teaching, research, and project supervision. His role encompasses delivering advanced mechanical engineering concepts to undergraduate and postgraduate students, while also leading experimental and simulation-based research in structural optimization and composite design. Throughout his tenure, he has collaborated with other scholars to produce high-impact research, and his leadership in academic projects has positioned him as a promising researcher in the mechanical engineering field. His experience bridges both academia and practical engineering challenges, making his work particularly relevant for industry applications.

Research Interest

Dr. Zhang’s research is primarily centered on crashworthiness design, thin-walled structures, composite material behavior, and simulation-based structural optimization. His work is rooted in the development of safer and more efficient structural components, especially for automotive and highway applications. He explores the mechanical responses of special-shaped and fiber-reinforced composite tubes under dynamic loads, as well as rate-dependent behavior of carbon fiber laminates. By combining experimental mechanics with finite element analysis, he aims to derive design principles that enhance structural energy absorption, safety, and material efficiency. His research not only advances scientific knowledge but also has direct implications for transportation safety.

Awards

Although the document does not list specific awards, Dr. Zhang’s publication in high-impact journals such as Thin-Walled Structures, International Journal of Mechanical Sciences, and Composites Part B indicates a high level of peer recognition. His contributions have likely garnered departmental or institutional commendations, given the rigor and impact of his published work. His eligibility for prestigious award nominations is well-supported by his academic achievements, consistent research output, and relevance of his work to structural safety and optimization in engineering design.

Publications

Among Dr. Zhang’s numerous publications, several stand out for their significance and impact. His 2024 paper titled “Crashworthiness analysis and optimization design of special-shaped thin-walled tubes by experiments and numerical simulation”, published in Thin-Walled Structures, addresses innovative design for energy absorption structures. Another impactful paper is “Crashworthiness of different composite tubes by experiments and simulations”, published in Composites Part B (2018, cited by over 100 articles), highlighting experimental and simulation approaches to structural performance. In 2020, his work “Rate-related study on the ply orientation of carbon fiber reinforced epoxy composite laminates” appeared in the International Journal of Mechanical Sciences, contributing to material behavior research. Additionally, his 2020 paper, “Optimization design of highway cable barriers based on collision safety consideration” in Structural and Multidisciplinary Optimization, offered practical solutions for infrastructure safety. Other notable works include a 2018 article on winding orientation optimization in Thin-Walled Structures and studies on mechanical properties of nanocomposites and bio-inspired crashworthiness designs, evidencing his diverse research portfolio.

Conclusion

Zheyi Zhang emerges as a highly suitable candidate for the Best Researcher Award. His comprehensive academic training, active teaching role, and sustained research output in impactful, safety-driven areas of mechanical engineering set him apart. With a strong publication record in respected journals and innovative contributions to crash safety and composite material optimization, he embodies the qualities of a dedicated and forward-thinking researcher. Recognizing him with this award would not only honor his past achievements but also encourage continued advancements in structural engineering and materials science.

Debin Wang | Fiber Reinforcement in Composites | Best Researcher Award

Assoc Prof Dr. Debin Wang | Fiber Reinforcement in Composites | Best Researcher Award

Professor at Dalian Jiaotong University, China

Profile:

Current Position🌟

De-bin Wang serves as an Associate Professor at Dalian Jiaotong University, where he contributes significantly to the fields of structural seismic resistance and earthquake engineering. With his strong foundation in structural engineering, he specializes in innovative solutions that enhance infrastructure resilience, particularly in seismic-prone regions. His role as an educator and researcher allows him to guide students while driving forward projects in structural dynamics and earthquake-resistant design.

Academic Background📚

Dr. Wang holds a PhD from Dalian University of Technology, earned in 2013, where he developed a solid academic foundation in civil and structural engineering. Following his doctorate, he began his teaching and research career at Dalian Jiaotong University. His background emphasizes earthquake engineering, where he has conducted extensive studies on seismic-resistant structures, a field in which he continues to expand his expertise and make noteworthy contributions.

Scholarships and Awards🏆

Over his career, Dr. Wang has earned multiple awards, reflecting his commitment and expertise in his field. He has received recognition for his contributions to seismic research and his role as a leader in innovative earthquake-resistant technologies. These accolades underscore his dedication to research excellence and pioneering solutions in structural engineering.

Ongoing Research Projects🔍

Dr. Wang is currently leading two significant research projects focusing on seismic performance and structural collapse dynamics:

National Natural Science Foundation Youth Program: This project, titled “Research on Seismic Performance and Asymmetric Structural Collapse Process of Reinforced Concrete Columns under Composite Dynamic Loads,” explores how various dynamic loads influence reinforced concrete columns’ stability during seismic events. The project aims to improve our understanding of structural resilience and inform safer building practices.

Liaoning Provincial Department of Education General Project: This project investigates “The Collapse Process of Bridge Structures Considering Bridge Pier Corrosion and Dynamic Effects.” By examining corrosion’s effects on bridge integrity, this research addresses long-term durability and seismic safety in aging infrastructure.

Consultancy and Industry Projects📜

Dr. Wang actively collaborates with industry leaders on projects that bring his research into practical application:

  • China Railway No.3 Engineering Group Co., Ltd.: Dr. Wang is consulting on the seismic performance of prefabricated concrete bridge pier connections, a project designed to enhance the stability of bridge structures.
  • Institute of Disaster Prevention: Here, he focuses on developing self-centering energy-dissipating braces for bridges, adding an extra layer of protection against seismic forces.

These industry projects highlight his commitment to ensuring that his research positively impacts infrastructure safety and resilience.

Research Interests🔬

Dr. Wang’s research interests center around earthquake engineering, seismic resistance, energy dissipation in structures, and structural health monitoring. His work has led to innovative dampers and seismic resistance mechanisms aimed at protecting infrastructure from earthquakes. His contributions to earthquake-resistant technologies showcase his vision of safer, more resilient urban spaces.

Professional Associations🧑‍🔬

As a recognized expert, Dr. Wang is actively involved in professional organizations related to structural and earthquake engineering. His memberships help him stay connected with other professionals and researchers, promoting collaboration and knowledge-sharing that strengthen his research output and industry impact.

Training & Workshops🎓

Throughout his career, Dr. Wang has participated in various workshops and training programs. These sessions cover topics such as advanced earthquake engineering, new seismic technologies, and structural health monitoring, keeping him updated with the latest trends and methodologies.

Oral Presentations📢

Dr. Wang frequently presents his findings at conferences and symposia where he shares insights into self-centering systems and damping technologies for earthquake resilience. His presentations attract the attention of both academic and industry professionals interested in adopting innovative structural solutions to improve safety in seismic zones.

Tasks Completed as a Researcher🏅

As a lead researcher, Dr. Wang has successfully completed multiple tasks, including:

  • Overseeing extensive field tests on seismic-resilient materials.
  • Developing simulation models for earthquake-induced stress analysis in structures.
  • Authoring comprehensive reports for government and industry stakeholders on seismic risk mitigation.

These accomplishments reflect his dedication to thorough, impactful research.

Success Factors🌱

Dr. Wang attributes his success to a strong foundation in structural engineering principles and a persistent drive to address real-world challenges through innovation. His work ethic, collaborative spirit, and ability to translate research into tangible industry solutions make him a valued contributor to the field.

Publications & Laboratory Experience📊

Dr. Wang’s laboratory experience encompasses a wide array of structural tests, from material durability analysis to seismic simulations that examine structural behavior under earthquake conditions. His lab-based findings directly contribute to the publications and patents he has secured, illustrating his approach to rigorous, data-driven research that informs his innovative solutions in seismic resilience.

📖Publications:

Paper Title: Experimental and Analytical Investigation on the Behavior of Deformation-Amplified Torsional Steel-Tube Dampers

  • Authors: Wang, D.-B., Wang, S.-H., Sun, Z.-G., Wang, W.-M.
  • Journal: Journal of Constructional Steel Research
  • Year: 2025

Paper Title: Study on the mechanical properties of a viscoelastic self-centering brace with rotational displacement amplification and its application in RC frames

  • Authors: Wang, D., Pang, R., Fan, G., Wang, G.
  • Journal: Journal of Building Engineering
  • Year: 2024

Paper Title: Performance Tests of Rotating-Amplification Type Friction Self-Centering Brace and Its Restoring Force Model Verification

  • Authors: Wang, D., Zhang, X., Fu, X., Wang, W., Liu, L.
  • Journal: Zhendong yu Chongji/Journal of Vibration and Shock
  • Year: 2024

Paper Title: Study on Seismic Performance of Exterior Reinforced Concrete Beam-Column Joint Under Variable Loading Speeds or Axial Forces

  • Authors: Fan, G., Xiang, W., Wang, D., Dou, Z., Tang, X.
  • Journal: Earthquake and Structures
  • Year: 2024

Paper Title: Research on the Mechanical Model and Hysteresis Performance of a New Mild Steel-Rotational Friction Hybrid Self-Centering Damper

  • Authors: Wang, D., Pang, R., Wang, G., Fan, G.
  • Journal: Materials
  • Year: 2023