Innovative Research Award
| Xinjian Yuan | |
|---|---|
| Affiliation | Chongqing University |
| Country | China |
| Scopus ID | 13404793500 |
| Documents | 85 |
| Citations | 1633 |
| h-index | 24 |
| Subject Area | Welding Surfacing Technology |
| Event | Global Metallurgy Awards |
Xinjian Yuan,
Chongqing University
Xinjian Yuan, affiliated with Chongqing University, China, is recognized for scholarly contributions in welding surfacing technology. His publication record, citation impact, and sustained research activity demonstrate consistent academic productivity and international research visibility within metallurgy and advanced manufacturing disciplines.[1]
Contents
Abstract
This academic profile summarizes the research achievements of Xinjian Yuan in welding surfacing technology. The article highlights research productivity, publication performance, scholarly influence, and suitability for recognition through the Innovative Research Award based on publicly available bibliometric information and academic records.[1]
Keywords
Welding Surfacing Technology, Metallurgy, Surface Engineering, Materials Science, Welding Engineering, Advanced Manufacturing, Research Excellence, Citation Impact, Scopus Author, Innovative Research Award.[2]
Introduction
Xinjian Yuan has established an active research career focused on welding surfacing technology and metallurgical engineering. His work contributes to understanding advanced welding processes, material performance, and engineering applications while supporting scientific progress through peer-reviewed publications and collaborative research initiatives worldwide.[1] [2]
Research Profile
The research profile demonstrates sustained scholarly productivity with 85 indexed publications, 1,633 citations, and an h-index of 24. These bibliometric indicators reflect consistent publication quality, academic visibility, and meaningful engagement within the international metallurgy and welding engineering research community.[1]
Research Contributions
Research contributions include investigations into welding surfacing techniques, coating technologies, material behavior, and process optimization. The published studies support industrial manufacturing, improve surface performance, and advance engineering knowledge through innovative experimental methodologies and collaborative scientific research activities.[2] [3]
Publications
The publication portfolio consists of peer-reviewed journal articles addressing metallurgy, welding science, surface engineering, and materials processing. Numerous publications have received scholarly citations, indicating continued relevance and recognition by researchers working across manufacturing and materials engineering disciplines.[3]
Research Impact
Citation performance and publication quality indicate measurable research influence within welding and metallurgy. The accumulated citation record demonstrates that published findings continue to inform subsequent investigations, encouraging scientific collaboration and supporting technological development across relevant engineering research fields.[1]
Award Suitability
Based on available bibliometric indicators and research achievements, the candidate demonstrates qualifications aligned with the objectives of the Innovative Research Award. Sustained publication activity, citation influence, and technical contributions support consideration for academic recognition within the Global Metallurgy Awards.[1]
Conclusion
Xinjian Yuan’s academic record reflects continuous contributions to welding surfacing technology through impactful publications, measurable citation performance, and international research engagement. These accomplishments provide a strong scholarly foundation supporting professional recognition and continued advancement in metallurgical engineering research.[1]
External Links
References
- Elsevier. (n.d.). Scopus Author Details: Xinjian Yuan, Author ID 13404793500. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=13404793500
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Li, Z., Yuan, X., Luo, Y., Wang, K., Zhao, Y., Sun, J., Qiu, C., & Yuan, Y. (2026). Failure behavior of power transmission engineering lap structures under dynamic impacts. International Journal of Impact Engineering.
- Global Metallurgy Awards. Award evaluation guidelines.