Xigui Wang | Contact Mechanics | Innovative Research Award

Innovative Research Award

Xigui Wang
Researcher Xigui Wang
Affiliation Huaqiao University
Country China
Scopus ID 55865520500
Documents 71
Citations 232 Citations by 190 Documents
h-index 7
Subject Area Contact Mechanics
Event Global Mechanics Awards
ORCID 0000-0002-2611-4191

Xigui Wang
Huaqiao University, China

The Innovative Research Award recognizes scholarly excellence demonstrated through sustained contributions to the advancement of research within the field of contact mechanics. Xigui Wang, affiliated with Huaqiao University, has established an academic profile characterized by peer-reviewed publications, measurable citation impact, and interdisciplinary investigations addressing engineering mechanics and material behavior.[1]

Abstract

This article presents an academic overview of Xigui Wang’s research profile and evaluates the scholarly contributions supporting recognition through the Innovative Research Award. The assessment considers publication productivity, citation performance, subject specialization, and broader research relevance within contact mechanics and engineering sciences.[1]

Keywords

Contact Mechanics, Engineering Mechanics, Material Behavior, Tribology, Structural Analysis, Computational Mechanics, Scientific Publications, Innovative Research Award.

Introduction

Contemporary engineering research increasingly depends upon advances in contact mechanics to improve the design, durability, and performance of structural systems. Researchers working in this discipline contribute to theoretical developments, computational modeling, and practical engineering applications that benefit industrial and academic communities alike.[2]

Research Profile

  • Affiliation: Huaqiao University
  • Primary research specialization: Contact Mechanics
  • Scopus Documents: 71
  • Citation Count: 232
  • h-index: 7

Research Contributions

Research contributions include analytical and computational investigations related to contact behavior, material interactions, numerical simulation, and engineering optimization. These studies contribute to the understanding of mechanical performance under complex loading conditions while supporting advances in applied mechanics and structural engineering.[2]

Publications

The documented publication record includes journal articles indexed in major international databases. These publications demonstrate continued scholarly engagement and dissemination of research findings through peer-reviewed academic literature.[1]

Research Impact

Citation metrics indicate that the research outputs have received recognition from the international scholarly community. Citation activity, combined with an h-index of 7 and publication output, reflects measurable academic influence within specialized engineering disciplines.[1]

Award Suitability

Based upon available bibliometric indicators, publication productivity, specialization in contact mechanics, and sustained scholarly activity, Xigui Wang demonstrates qualifications consistent with recognition through the Innovative Research Award presented during the Global Mechanics Awards. The evaluation reflects objective academic indicators rather than promotional claims.[1]

Conclusion

The academic profile summarized in this article illustrates an established record of scientific research in contact mechanics supported by internationally indexed publications and scholarly citations. These achievements collectively provide an evidence-based foundation for professional academic recognition.

References

  1. Elsevier. (n.d.). Scopus Author Details: Xigui Wang, Author ID 55865520500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55865520500
  2. DOI Foundation. (2020). Representative scholarly publication in tribology and contact mechanics.
    https://doi.org/10.1016/j.triboint.2020.106000
  3. Global Mechanics Awards. Official Award Website.
    https://globalmechanicsawards.com/

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Frahad Samimi Namin | Contact Mechanics | Editorial Board Member

Dr. Frahad Samimi Namin | Contact Mechanics | Editorial Board Member

The Academic Staff of the University at University of Zanjan | Iran

Dr. Frahad Samimi Namin is an accomplished mining engineering scholar and Assistant Professor whose academic and professional journey reflects deep expertise in underground mining method selection, mine planning, and advanced decision-making systems; he completed his foundational studies in mining engineering before pursuing advanced postgraduate research that culminated in a doctoral thesis titled “Development of a Decision Theory Based Model for Underground Mining Method Selection,” a work that established his reputation in integrating multicriteria decision-making, fuzzy logic, and mine design principles; he expanded his research exposure through a sabbatical at Istanbul University, where he further refined his scientific approach to mining systems analysis; over the course of his academic career at the University of Zanjan, he taught a wide range of specialized courses including Underground Mining Methods, Advanced Underground Excavation Methods, Principles of Mine Design, Mine Surveying, Mine Ventilation, Tunneling, Shaft Sinking, and Mine Management, contributing significantly to professional training in the mining sector; his scientific interests span mine planning and design, mining method and equipment selection, environmental impact assessment, and hybrid fuzzy-based decision support tools; he has authored and co-authored impactful publications such as “FMMSIC: A Hybrid Fuzzy Based Decision Support System for MMS (In Order to Estimate Interrelationships Between Criteria)” and “Practical Applications from Decision-Making Techniques for Selection of Suitable Mining Method in Iran,” along with several influential ISI journal papers addressing fuzzy decision-making models, environmental impacts of open-pit mining, and optimization strategies in mining operations; his research presented at numerous international conferences highlights innovative applications of fuzzy logic, numerical modeling, slope stability analysis, and operational optimization, positioning him as a recognized contributor to modern mining engineering methodologies and intelligent decision frameworks.

Profile:  Scopus | Orcid 

Featured Publications:

Salimi, M. H., Samimi Namin, F., Nikbin, V., & Ataee-Pour, M. (2025). Enhancing illumination efficiency in underground mines: A decision analysis approach to optimize lamp selection and arrangement. Mining, Metallurgy & Exploration.

Samimi Namin, F., & Rouhani, M. M. (2024). A review: Applications of fuzzy theory in rock engineering. Indian Geotechnical Journal.

Fetri, M., Shahabi, R. S., Namin, F. S., Zeyni, E. E., & Khereshki, M. H. K. (2023). Analyzing the effects of natural ventilation caused by excavating the waste pass on the ventilation network of the Anguran mine. International Journal of Mining and Geo-Engineering.

Jalali, Z., & Namin, F. S. (2023). Development of a new system for improving blastability by using the fuzzy Delphi AHP method. International Journal of Mining and Geo-Engineering.

Rouhani, M. M., & Samimi Namin, F. (2023). Investigate the potential of using fuzzy similarity in decision making under uncertainty for mining projects. Resources Policy.

Samimi Namin, F., Ghadi, A., & Saki, F. (2022). A literature review of multi criteria decision-making (MCDM) towards mining method selection (MMS). Resources Policy.