Hayder Rasheed | Resilient Infrastructure | Excellence in Innovation Award

Excellence in Innovation Award

Hayder Rasheed
Affiliation Kansas State University
Country United States
Scopus ID 7004021000
Documents 138
Citations 2,175
h-index 23
Subject Area FRP Strengthening and Anchorage
Event Architecture Engineers Awards
ORCID 0000-0002-2675-6485

Hayder Rasheed, Kansas State University, United States, has established a recognized research profile in FRP strengthening and anchorage systems for civil and structural engineering applications. His scholarly publications, citation record, and sustained research activity demonstrate continued contributions to infrastructure resilience and advanced composite technologies.[1]

Abstract

This article presents an academic overview of Hayder Rasheed’s research achievements, highlighting scholarly productivity, engineering innovations, citation performance, and contributions to FRP strengthening and anchorage technologies. The profile summarizes measurable academic indicators supporting recognition through the Excellence in Innovation Award.[1]

Keywords

  • FRP Strengthening
  • Anchorage Systems
  • Structural Engineering
  • Composite Materials
  • Infrastructure Rehabilitation
  • Innovation Award

Introduction

Hayder Rasheed has contributed to structural engineering through investigations involving fiber-reinforced polymer strengthening, anchorage behavior, and rehabilitation of civil infrastructure. His research integrates analytical methods with engineering applications, supporting safer and more durable structural systems while advancing knowledge within composite construction technologies.[1][2]

Research Profile

Affiliated with Kansas State University, Hayder Rasheed has authored 138 indexed publications with more than 2,175 citations and an h-index of 23. His academic portfolio reflects sustained productivity and interdisciplinary collaboration within structural engineering, infrastructure resilience, and advanced composite material research.[1][3]

Research Contributions

His investigations have expanded understanding of FRP strengthening techniques, anchorage efficiency, and structural performance under diverse loading conditions. These studies provide practical guidance for engineers designing rehabilitation strategies, promoting improved durability, reliability, and service life of reinforced concrete infrastructure.[2][4]

Publications

The researcher’s publication record spans peer-reviewed journals, conference proceedings, and engineering literature emphasizing structural strengthening, composite systems, and infrastructure rehabilitation. These scholarly outputs demonstrate consistent dissemination of research findings and contribute valuable technical references for researchers and practicing engineers.[1][3]

Research Impact

The citation performance and continuing academic influence of Hayder Rasheed’s publications indicate meaningful recognition within the engineering community. His work supports evidence-based infrastructure rehabilitation practices and serves as a foundation for further developments in composite structural engineering research.[1][2]

Award Suitability

The Excellence in Innovation Award recognizes measurable academic achievement, sustained research productivity, and engineering innovation. Hayder Rasheed’s scholarly profile, publication record, citation metrics, and contributions to FRP strengthening technologies align with the evaluation principles commonly associated with distinguished academic recognition.[1][4]

Conclusion

Hayder Rasheed’s academic achievements demonstrate continued contributions to structural engineering through research, publication, and scholarly influence. His work in FRP strengthening and anchorage provides valuable knowledge supporting infrastructure improvement and represents an appropriate basis for professional academic recognition.[1][3]

References

  1. Elsevier. (n.d.). Scopus Author Details: Hayder Rasheed, Author ID 7004021000. Scopus.https://www.scopus.com/authid/detail.uri?authorId=7004021000
  2. Alqarni, A. H., Rasheed, H. A., & Ghimire, K. (2026). Innovative reinforced concrete deep beam analysis using improved strut-and-tie method. ACI Structural Journal, 123(3), 211–224
    https://www.concrete.org/publications/internationalconcreteabstractsportal.aspx?m=details&id=51750571
  3. Google Scholar. (n.d.). Hayder Rasheed Citation Profile.https://scholar.google.com/citations?hl=en&user=tx5ipwMAAAAJ
  4. Architecture Engineers Awards. (n.d.). Architecture Engineers Awards Official Website.https://architectureengineers.com/