Jiyang Yi | Engineering | Best Researcher Award

Best Researcher Award

Jiyang Yi
Affiliation Nanjing Forestry University
Country China
Scopus ID 58249403100
Documents 27
Citations 308
h-index 11
Subject Area Engineering
Event World Top Scientist Awards
ORCID 0009-0006-2838-7739

Jiyang Yi – Nanjing Forestry University

Jiyang Yi is a researcher at Nanjing Forestry University, China, specializing in structural engineering, construction materials, composite structures, and computational engineering. His research includes reinforced concrete, concrete-filled steel tubes, bamboo composites, structural strengthening, and machine-learning-based engineering prediction.

Abstract

Jiyang Yi’s documented research profile represents a multidisciplinary engineering portfolio combining experimental investigation, structural modelling, advanced materials, and machine-learning methods. His published research addresses structural capacity, mechanical behaviour, composite members, bamboo-based construction materials, and computational prediction. These themes position his work within contemporary structural and construction engineering research.[2]

Keywords

Structural Engineering; Bamboo Composites; Concrete-Filled Steel Tubes; Reinforced Concrete; Composite Structures; Structural Materials; Machine Learning; Structural Capacity; Sustainable Construction; Engineering Modelling.

Introduction

Modern structural engineering increasingly integrates laboratory experiments, numerical simulation, sustainable materials, and data-driven prediction. Yi’s documented publications reflect this development through research on structural members and materials together with computational techniques. The research record includes studies published in established engineering journals and covers both conventional and emerging structural systems. Examples include bamboo scrimber members, concrete-filled steel tubes, reinforced concrete columns, composite beams, structural connectors, and machine-learning prediction models. [1] [2]

Research Profile

The supplied ORCID information identifies Jiyang Yi as affiliated with Nanjing Forestry University in Nanjing, Jiangsu, China. His recent publications demonstrate continuing activity in structural performance assessment and computational modelling. Topics include axial compression, flexural behaviour, structural strengthening, connector mechanics, bamboo materials, and interpretable machine-learning approaches for predicting structural capacity. [3] [4]

Research Contributions

One important research theme is the engineering evaluation of bamboo and bamboo scrimber. The documented publications examine thermal modification, axial compression, flexural properties, and bamboo-integrated structural systems. Such studies contribute experimental evidence and modelling approaches for understanding the mechanical performance of alternative construction materials. [4] [5]

Publications

Jiyang Yi’s research reflects a broad interest in structural engineering and advanced construction materials. His work combines experimental investigation, numerical analysis, and computational methods to examine structural performance and material behaviour. The research also considers innovative materials and data-driven approaches in engineering. These areas demonstrate an interdisciplinary approach to contemporary structural research. [2]

Research Impact

The supplied bibliometric information reports 27 documents, 308 citations, and an h-index of 11. These indicators provide quantitative measures of scholarly visibility and citation activity. They can be considered alongside publication quality, research originality, collaboration, and the relevance of individual contributions when evaluating a researcher’s overall academic profile. [1]

Award Suitability

The documented profile contains several measurable elements relevant to an academic recognition assessment, including an established university affiliation, a defined engineering subject area, a substantial publication record, citation activity, and an h-index. The breadth of topics across structural materials, composite systems, and computational engineering further provides a basis for scholarly evaluation.[5]

Conclusion

Jiyang Yi’s documented research activity demonstrates a continuing focus on structural engineering, construction materials, composite systems, and computational analysis. His publication record includes experimental, numerical, and machine-learning studies involving bamboo, concrete, steel, and hybrid structural systems. [3]

References

  1. Elsevier. (n.d.). Scopus author details: Jiyang Yi, Author ID 58249403100. Scopus.https://www.scopus.com/pages/authors/58249403100
  2. Zhao, Z., Wei, Y., Yi, J., Chen, J., Ding, Y., Huang, L., & Lin, Y. (2026). Unified prediction of monotonic axial compression capacity of square and circular UHPC-filled steel tube columns: A machine learning-based approach. Thin-Walled Structures.https://doi.org/10.1016/J.TWS.2026.115384
  3. Xie, X., Wei, Y., Yi, J., Zhang, Z., Chen, J., & Huang, S. (2026). Aging effects on compressive behavior, micromechanisms, and constitutive modeling of laminated bamboo. Construction and Building Materials.https://doi.org/10.1016/J.CONBUILDMAT.2026.147987
  4. Zhang, Z., Wei, Y., Wang, J., Yi, J., & Wang, G. (2024). Effect of thermal modification on axial compression properties and hardness of laminated bamboo. Construction and Building Materials.https://doi.org/10.1016/j.conbuildmat.2023.134747
  5. Zhang, Y., Ren, C., Yi, J., Wei, Y., Li, G., & Zhao, H. (2024). Axial compression performance of concrete-filled steel tubular columns with damaged BFRP jackets. Construction and Building Materials.https://doi.org/10.1016/j.conbuildmat.2024.137640

Dongfeng Qi | Engineering | Best Researcher Award

Prof. Dongfeng Qi | Engineering | Best Researcher Award

Professor | Shandong University of Technology | China

Prof. Dongfeng Qi is a leading researcher in laser manufacturing and material processing, specializing in femtosecond and nanosecond laser applications for advanced materials and flexible electronics. His work integrates theoretical modeling with experimental techniques to develop innovative micro- and nanostructures, including copper and silicon-based materials, phase-change films, and smart electronic devices. Prof. Qi has made substantial contributions to understanding laser-material interactions and patterning technologies, with high-impact publications in top-tier journals. He demonstrates strong interdisciplinary collaboration and mentorship, fostering international research partnerships and the growth of emerging scientists. His research is recognized for both fundamental insights and practical applications in photonics, energy storage, and flexible electronics. Prof. Qi’s consistent innovation, high-quality experimental work, and leadership in the field establish him as a leading figure in laser-based materials science. According to Scopus, he has 535 citations, 71 documents, and an h-index of 13.

Profiles: Scopus | Google Scholar

Featured Publications

1. Programming nanoparticles in multiscale: optically modulated assembly and phase switching of silicon nanoparticle array; L. Wang, Y. Rho, W. Shou, S. Hong, K. Kato, M. Eliceiri, M. Shi, …; ACS Nano, vol. 12, no. 3, pp. 2231–2241, 2018; 39 citations

2. Time-resolved analysis of thickness-dependent dewetting and ablation of silver films upon nanosecond laser irradiation; D. Qi, D. Paeng, J. Yeo, E. Kim, L. Wang, S. Chen, C. P. Grigoropoulos; Applied Physics Letters, vol. 108, no. 21, 2016; 37 citations

3. Femtosecond laser-induced large area of periodic structures on chalcogenide glass via twice laser direct-writing scanning process; X. Yu, Q. Zhang, D. Qi, S. Tang, S. Dai, P. Zhang, Y. Xu, X. Shen; Optics & Laser Technology, vol. 124, 105977, 2020; 34 citations

4. Progress in the design, nanofabrication, and performance of metalenses; Z. Wang, Y. Wu, D. Qi, W. Yu, H. Zheng; Journal of Optics, vol. 24, no. 3, 033001, 2022; 31 citations

5. Progress in preparation and applications of Te-As-Se chalcogenide glasses and fibers; Z. Wu, Y. Xu, D. Qi, Q. Nie, X. Zhang; Infrared Physics & Technology, vol. 102, 102981, 2019; 31 citations