Lihong Zhang | Aerospace and Automotive Applications | Best Researcher Award

Best Researcher Award

Lihong Zhang
Affiliation University of Manchester
Country United Kingdom
Scopus ID 37079828400
Documents 27
Citations 1289
h-index 13
Subject Area Aerospace and Automotive Applications
Event International Research Awards on Fiberreinforced Polymer
ORCID 0000-0003-0183-3517

Lihong Zhang

University of Manchester, United Kingdom

The Best Researcher Award recognizes the scholarly contributions of Lihong Zhang, whose interdisciplinary research spans digital transformation, project management, sustainability, and advanced applications related to aerospace and automotive systems. Through an expanding body of publications and conference contributions, the researcher has demonstrated a sustained commitment to understanding complex product-service systems and emerging digital ecosystems. The academic profile, supported by a substantial citation record and international collaborations, reflects notable influence within engineering and management research communities.[1]

Abstract

Lihong Zhang’s research portfolio combines engineering management, digital transformation, and sustainability studies with applications that contribute to aerospace and automotive innovation. The body of work addresses contemporary challenges in project management, circular supply chains, and data-driven decision making. Through methodological diversity and interdisciplinary collaboration, the researcher has contributed to advancing theoretical and practical understanding of complex systems and organizational performance.[2]

Keywords

Digital Transformation; Project Management; Aerospace Applications; Automotive Systems; Sustainability; Circular Supply Chains; Big Textual Data; Corporate Reputation Measurement.

Introduction

The increasing integration of digital technologies into engineering and management disciplines has created opportunities for interdisciplinary research. Lihong Zhang’s investigations explore these developments through studies of organizational transformation, sustainable product-service systems, and analytical methods capable of addressing complex datasets. These themes have become increasingly relevant in industries seeking resilient and data-informed operational strategies.[3]

Research Profile

The researcher maintains an internationally visible scholarly profile with significant citation impact and a growing publication record. The Scopus profile reports 27 indexed documents and more than one thousand citations, reflecting both productivity and influence across multiple domains. Research activities demonstrate engagement with engineering management, sustainability studies, and digital innovation.[1]

Research Contributions

  • Advanced understanding of AI-driven corporate reputation measurement in digital ecosystems.
  • Development of systematic reviews concerning digital transformation in project management.
  • Research on sustainable design and responsible project management in complex product-service systems.
  • Application of topic modelling and grounded theory techniques to large textual datasets.

Publications

  • AI-driven corporate reputation measurement in digital ecosystems, Acta Psychologica (2025).
  • Digital Transformation in Project Management: A Systematic Review and Research Agenda, Systems (2025).
  • Towards a complex push-to-pull dynamics in circular construction supply chains, Engineering, Construction and Architectural Management (2025).
  • Big textual data research for operations management, International Journal of Operations and Production Management (2024).

Research Impact

The research output has contributed to ongoing discussions concerning digital ecosystems, sustainability transitions, and evidence-based project management practices. Citation performance indicates broad scholarly engagement and suggests that the research findings have influenced subsequent investigations in engineering and management studies. The integration of methodological innovation with practical applications enhances the significance of the work across both academic and industrial settings.[4]

Award Suitability

Lihong Zhang’s sustained scholarly productivity, interdisciplinary orientation, and measurable research impact make the researcher an appropriate candidate for the Best Researcher Award presented during the International Research Awards on Fiberreinforced Polymer. The combination of publication quality, citation influence, and relevance to advanced engineering applications aligns with the objectives of recognizing excellence in research and innovation.[5]

Conclusion

The academic contributions of Lihong Zhang illustrate the value of interdisciplinary scholarship in addressing contemporary engineering and management challenges. Through influential publications, methodological advancement, and sustained international engagement, the researcher has established a noteworthy profile that supports recognition through the Best Researcher Award and highlights continuing contributions to scientific knowledge.[6]

References

  1. Elsevier. (n.d.). Scopus author details: Lihong Zhang, Author ID 37079828400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=37079828400
  2. Zhang, L. (2025). AI-driven corporate reputation measurement in digital ecosystems. Acta Psychologica.
    https://doi.org/10.1016/j.actpsy.2025.105846
  3. Zhang, L. (2025). Digital Transformation in Project Management: A Systematic Review and Research Agenda. Systems.
    https://doi.org/10.3390/systems13080625
  4. Zhang, L. (2025). Towards a complex push-to-pull dynamics in circular construction supply chains. Engineering, Construction and Architectural Management.
    https://doi.org/10.1108/ECAM-03-2023-0294
  5. Zhang, L. (2024). A Novel Method for Theorising with Big Textual Data: Topic Modelling with Grounded Theory. Academy of Management Proceedings.
    https://doi.org/10.5465/amproc.2024.19331abstract
  6. Zhang, L. (2024). Big textual data research for operations management. International Journal of Operations and Production Management.
    https://doi.org/10.1108/IJOPM-03-2023-0239

Shuai Hao | Manufacturing | Best Researcher Award

Mr. Shuai Hao | Manufacturing | Best Researcher Award

Mr. Shuai Hao | Cranfield University | United Kingdom

Mr. Hao Shuai is an emerging researcher in the field of composites and advanced materials engineering, currently pursuing his PhD at Cranfield University, United Kingdom, where he previously completed his MPhil in Manufacturing with a specialization in Composites and Advanced Materials. He earned his Bachelor’s degree in Macromolecular Materials and Engineering from Yangtze University, China, in 2019, where he demonstrated exceptional academic performance, receiving multiple scholarships and awards, including the Single Scholarship for Excellent Performance in Postgraduate Entrance Examination and several individual scholarships for outstanding academic results. His professional experience includes practical training at Jingmen Petrochemical Company and Zhijiang Sanning Chemical Industry Company, where he gained hands-on knowledge in petrochemical processing, polymer production, and material recovery systems. Mr. Shuai’s research focuses on the development of sustainable composite materials and innovative manufacturing techniques, integrating biopolymers and nanomaterials to enhance material performance. His recent publication, Development of Hybrid Electrospun Alginate-Pulverized Moringa Composites, published in RSC Advances (2024), reflects his contributions to advancing green and high-performance material technologies. With a strong foundation in both theoretical research and industrial practice, Mr. Shuai exemplifies academic excellence, innovation, and dedication to solving real-world engineering challenges. His work aligns closely with global efforts in sustainable materials development, positioning him as a promising young researcher with significant potential to contribute to the advancement of materials science and manufacturing engineering.

Profile:  ORCID  |  Staff Page

Featured Publications

Hao, S., Orisawayi, A. O., Koziol, K., Tiwari, S., & Rahatekar, S. S. (2024). Development of hybrid electrospun alginate-pulverized moringa composites. RSC Advances,

Guoqing Yuan | aerospace, advanced manufacture | FRP Technical Achievement Award

Assoc. Prof. Dr. Guoqing Yuan | aerospace, advanced manufacture | FRP Technical Achievement Award

Associate Professor at Tongji University, China

Dr. Guoqing Yuan is an esteemed Associate Professor at the School of Aerospace Engineering and Applied Mechanics at Tongji University. Over the course of his academic and research career, he has significantly contributed to the field of composite materials, smart structural systems, and engineering mechanics. His work is recognized for its innovation, practical relevance, and scientific depth, particularly in advancing shape memory alloy (SMA) actuated composites and the mechanical performance of adhesives in extreme environments. Dr. Yuan’s dedication to research, teaching, and applied engineering solutions makes him an influential figure in modern mechanics and material science.

Education

Dr. Yuan received all of his higher education from Tongji University, a leading institution in engineering education in China. He earned his Ph.D. in Engineering Mechanics in 2002 after completing a Master’s degree in Computational Mechanics in 1990. His academic journey began with a Bachelor’s degree in Solid Mechanics in 1987. These foundational degrees have equipped him with a profound understanding of mechanical behavior, computation, and materials, forming the bedrock of his distinguished research career.

Experience

Dr. Yuan’s academic journey at Tongji University spans over three decades. Starting as an Assistant Lecturer in 1990, he was later promoted to Lecturer in 1993 and served in that role until 2001. He then became Associate Professor at the Institute of Solid and Applied Mechanics before transitioning in 2004 to the Institute of Composite Materials and Structures, where he continues to teach and conduct research. His professional roles have encompassed both teaching and leadership in research initiatives, mentoring students, and developing innovative methodologies in structural analysis and material engineering.

Research Interest

Dr. Yuan’s research interests are focused on advanced composite structures, shape memory alloy-reinforced smart materials, mechanical behavior of adhesives under low-temperature and high-strain-rate conditions, and stress simulations during composite curing processes. His studies address critical issues in aerospace, civil, and marine engineering, including durability, structural integrity, and material resilience under harsh environmental conditions. Ongoing projects include research into cold extrusion strengthening technology for slotted bushings and residual stress simulations at ultra-low temperatures, with a practical focus on enhancing composite performance and longevity.

Awards

Dr. Yuan has been honored with several accolades for his research and technological innovation. Notably, he received the 2011 Research Award from the Navigation Society for Technological Progress for his work on FRP-reinforced concrete structures used in port engineering. He also holds multiple Chinese patents, such as those related to FRP end anchorage testing, SMA actuator design, and FRP coaxial connections, reflecting both his engineering ingenuity and impact on applied mechanics. These recognitions underline his dedication to advancing practical applications in composite material systems.

Publications

Dr. Yuan has authored numerous high-impact journal articles that have attracted significant scholarly attention. Selected publications include:
(1) “Structural deformation performance of glass fiber reinforced polymer composite beam actuated by embedded indented SMA wires,” Composites Part B, 2019 – Cited by 55 articles;


(2) “Shear properties of polyurethane ductile adhesive at low temperatures under high strain rate conditions,” Composites Part B, 2019 – Cited by 42 articles;


(3) “Effect of high loading rate and low temperature on mode I fracture toughness of ductile polyurethane adhesive,” Journal of Adhesion Science and Technology, 2019 – Cited by 28 articles;


(4) “Enhancement of interfacial bonding strength of SMA smart composites by using mechanical indented method,” Composites Part B, 2016 – Cited by 61 articles;


(5) “Numerical study on the mechanical behavior of a polyurethane adhesive under high strain rate,” Composites Part B, 2019 – Cited by 33 articles;


(6) “Experimental and numerical study on the behavior of SMA wire reinforced smart composites,” Composites Science and Technology, 2015 – Cited by 48 articles;


(7) “Simulation and control of residual stress in thermoset composites,” Journal of Composite Materials, 2020 – Cited by 21 articles.
These publications highlight Dr. Yuan’s consistent and impactful contributions to the understanding and advancement of material behavior in engineering applications.

Conclusion

Dr. Guoqing Yuan presents a well-rounded and impressive profile in the realm of Fiber Reinforced Polymers. With a strong academic foundation, extensive publication record, impactful research projects, multiple practical patents, and relevant awards, he exemplifies the caliber of a deserving recipient of the FRP Technical Achievement Award.