Yi Li | Mechanical Engineering | Editorial Board Member

Editorial Board Member

Yi Li
Harbin Institute of Technology, China

Yi Li
Affiliation Harbin Institute of Technology
Country China
Scopus ID 59248977400
Documents 6
Citations 32
h-index 3
Subject Area Mechanical Engineering
Event Metallurgical Engineering Awards

Yi Li is an academic researcher affiliated with the Harbin Institute of Technology in China whose listed subject area is Mechanical Engineering. The available Scopus-indexed record identifies six documents, 32 citations, and an h-index of 3. These bibliometric indicators provide a quantitative overview of the research output represented in the indexed author record. [1] This profile presents Yi Li in the context of an Editorial Board Member academic recognition associated with Metallurgical Engineering Awards.

Abstract

Yi Li is a researcher at the Harbin Institute of Technology, China, working within the broad field of Mechanical Engineering. The available bibliometric record reports six Scopus-indexed documents, 32 citations, and an h-index of 3. [1] This academic profile describes the researcher’s documented scholarly record and its relevance to engineering research, while avoiding conclusions that cannot be established from the available bibliographic data. The profile is presented as part of an academic recognition framework for an Editorial Board Member associated with Metallurgical Engineering Awards.

Keywords

Yi Li; Mechanical Engineering; Harbin Institute of Technology; engineering research; Scopus; bibliometrics; scholarly publications; citations; h-index; editorial board; metallurgical engineering.

Introduction

Mechanical Engineering encompasses the analysis, design, manufacturing, and operation of mechanical systems and technologies. Its research activities frequently intersect with materials engineering, manufacturing, computational methods, structural analysis, and other engineering disciplines. In this multidisciplinary environment, publication databases such as Scopus provide structured information that can be used to examine indexed scholarly output and citation activity. [2]

Yi Li is affiliated with the Harbin Institute of Technology, a major Chinese institution with established activities across engineering and technological research. The Scopus author record supplied for this profile associates Yi Li with Scopus Author ID 59248977400 and records six documents, 32 citations, and an h-index of 3. [1]

Research Profile

The available research profile identifies Mechanical Engineering as the principal subject area. The indexed record contains six documents and 32 citations, producing an h-index of 3. [1] These figures describe the bibliometric record available for the specified Scopus author identifier and should be interpreted within the scope of database coverage, publication indexing, author disambiguation, and citation accumulation.

Research Contributions

The available information supports a general description of Yi Li’s contribution through the documented scholarly publication record. Six indexed documents indicate a measurable body of research output in the Scopus database, while the recorded citation count indicates that the indexed publications have received scholarly references from subsequent research. [4]

Publications

The supplied Scopus record indicates six indexed documents associated with Yi Li. [5] Because complete publication titles, journal information, publication dates, and DOI identifiers were not supplied with the profile data, this article does not attribute individual titles or research findings without direct bibliographic verification.

Research Impact

Research impact can be considered through multiple dimensions, including scholarly citations, publication quality, disciplinary relevance, collaboration, technological application, and contribution to subsequent research. In the supplied Scopus record, Yi Li has 32 citations across six indexed documents and an h-index of 3. [1] These indicators provide evidence of citation activity but do not by themselves constitute a comprehensive assessment of research quality or societal impact.[3]

Award Suitability

Yi Li’s documented affiliation with Harbin Institute of Technology and identified subject area of Mechanical Engineering provide an academic basis for consideration within an engineering-focused recognition framework. The available Scopus record also supplies independently structured bibliometric indicators that can form part of an academic profile review. [1]

Conclusion

Yi Li is identified in the supplied academic record as a Mechanical Engineering researcher affiliated with Harbin Institute of Technology in China. The associated Scopus profile reports six documents, 32 citations, and an h-index of 3. [1] These indicators establish a concise bibliometric profile that can support broader academic evaluation when considered alongside publication content, professional service, editorial responsibilities, and other verifiable scholarly activities.

References

  1. Elsevier. (n.d.). Scopus author details: Yi Li, Author ID 59248977400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59248977400
  2. Y Li, Y Li, T Zhang, et al. (2026). Functionally graded materials enabled by melt pool transition state stabilization in twin-wire laser directed energy deposition.
    https://www.sciencedirect.com/science/article/pii/S0890695526000611
  3. T Lin, C Li, H Zhou, R Chen, Y Li, et al. (2026). A Review on Cracking in Laser Additive Manufacturing of Nickel-Based Superalloys: Types, Formation Mechanisms, and Suppression Strategies
    https://onlinelibrary.wiley.com/doi/abs/10.1002/rar2.70180
  4. R Ye, F Chen, Y Li, C Liu, Y Pan, Z Wang. (2026). Thermal in-situ Monitoring and Predictive Control for Wire-Laser DED Using Feedforward–Feedback Coupling.
    https://link.springer.com/article/10.1007/s11665-025-11949-1
  5. Y Li, Z Wang, C Liu, F Chen, G Bi. (2025). From geometric precision to performance: Improved online monitoring system for thin-walled parts by fine wire laser directed energy deposition.
    https://www.sciencedirect.com/science/article/pii/S2950431725000115

 

Yafeng Qi | Mechanical Engineering | Research Excellence Award

Dr. Yafeng Qi | Mechanical Engineering | Research Excellence Award

Associate Professor at Xidian University | China

Dr. Yafeng Qi is a strong candidate for the Research Excellence Award due to his impactful research in nanostructured materials and metallurgical engineering. His work bridges mechanical engineering, molecular dynamics simulations, and AI-driven Raman spectroscopy to reveal atomic-scale mechanisms in advanced material systems. A key contribution includes elucidating the lubrication enhancement mechanism of SnNb₂O₆ nanoparticle additives, supporting experimental results that achieved a 78.9% reduction in wear rate. His research combines theoretical rigor with practical relevance. As reflected in his Scopus profile, he has 231 citations, 7 indexed publications, and an h-index of 5, demonstrating credible and growing scholarly impact.

Citation Metrics (Scopus)

300

200

100

50

0

Citations
231

Documents
7

h-index
5

Featured Publications

Antoni Mir Pons | Smart Materials | Young Scientist Award

Mr. Antoni Mir Pons | Smart Materials | Young Scientist Award

University of the Balearic Islands | Spain

Mr. Antoni Mir Pons is a Spanish civil engineer specializing in construction engineering and structural reinforcement, currently serving as a researcher at the University of the Balearic Islands (UIB). He holds a Bachelor’s degree in Industrial Technologies Engineering and Business Administration and Management from the University of Girona. He also earned a Master’s in Industrial Engineering from UIB, where he received the Best Master’s Thesis award. His doctoral research focuses on the effects of semi-cyclic loading on structural reinforcement using iron-based shape-memory alloys (Fe-SMA). Pons has contributed to several international conferences, including SMAR 2024 in Salerno and the 15th fib International PhD Symposium in Budapest, presenting studies on Fe-SMA reinforced concrete structures. His research interests encompass concrete structures and blasting, with a particular emphasis on the application of Fe-SMA for strengthening existing structures. He has been involved in various R&D projects, such as RESTART and CICLO-ESTRUCTURA, focusing on the resilience of concrete infrastructure and the structural effects of cyclic overloads on Fe-SMA reinforced concrete beams. Pons has published articles in peer-reviewed journals, including “Experimental study on semi-cyclic loading effects on Fe-SMA reinforced concrete structures” and “Effects of semi-cyclic loading on the recovery stresses of iron-based shape-memory alloy bars,” both co-authored with Sandra del Río Bonnín, Carlos Ribas, and Antoni Cladera. His Scopus profile indicates 4 documents, 2 citations and an h-index of 1. Additionally, he has teaching experience in laboratory practices for the Structures I course in the Technical Architecture program at UIB. Pons is also active on ResearchGate, where he shares his publications and collaborates with fellow researchers.

Profile: Scopus 

Feautured Publilcations

Mir Pons, A., Del-Río-Bonnín, S., Ruiz-Pinilla, J. G., & Cladera, A. (2025). Experimental study on recovery stress losses in Fe-SMA rebars under semi-cyclic loads considering different activation temperatures and multiple activations. Journal of Structural Engineering, 151(9), 04023109.

Mir Pons, A., Del-Río-Bonnín, S., Ribas, C., & Cladera, A. (2024). Experimental study on semi-cyclic loading effects on Fe-SMA reinforced concrete structures. Materials and Structures, 57(6), 1–16.

Mir Pons, A., Del-Río-Bonnín, S., Ribas, C., & Cladera, A. (2024). Effects of semi-cyclic loading on the recovery stresses of iron-based shape-memory alloy bars. Materials Science and Engineering: A, 859, 144151.

Mir Pons, A., Kustov, B., Ruiz Pinilla, J. G., & Cladera, A. (2024). Characterization of 11-mm Fe-SMA bars used as prestressing reinforcement in concrete structures. Proceedings of the 13th International Conference on Smart Materials and Nanotechnology in Engineering (SMN 2024), 1–8.

Mir Pons, A., Del Río-Bonnín, S., Ribas, C., & Cladera, A. (2024). Effects of semi-cyclic loading on reinforced concrete beams strengthened with iron-based shape-memory alloy bars. Proceedings of the 15th fib International PhD Symposium in Civil Engineering, 1–8.