Ying-Xin Cui | Elasticity | Innovative Research Award

Innovative Research Award

Ying-Xin Cui
Affiliation Shanxi Normal University
Country China
Scopus ID 57190865359
Documents 8
Citations 24 citations by 21 documents
h-index 4
Subject Area Elasticity
Event Global Mechanics Awards

Ying-Xin Cui

Shanxi Normal University, China

The Innovative Research Award recognizes scholarly excellence demonstrated through sustained scientific contributions, high-quality publications, and measurable research impact. Ying-Xin Cui, affiliated with Shanxi Normal University, has developed a research profile in the field of elasticity, contributing to the advancement of theoretical and applied mechanics through peer-reviewed investigations. The available scholarly metrics indicate consistent academic productivity and growing citation impact within the international research community.[1]

Abstract

Research in elasticity provides the theoretical framework required to understand stress, deformation, and structural response across engineering systems. Ying-Xin Cui’s scholarly activities contribute to this discipline through investigations that strengthen the analytical understanding of material behavior and mechanical performance. Published research demonstrates an emphasis on rigorous methodology, mathematical modeling, and engineering relevance, supporting continued development within mechanics-related research domains.[1][2]

Keywords

Elasticity, Solid Mechanics, Mechanical Engineering, Mathematical Modeling, Stress Analysis, Structural Mechanics, Continuum Mechanics, Engineering Materials, Scientific Research, Innovative Research Award.

Introduction

Elasticity remains one of the fundamental branches of mechanics, supporting innovations in civil engineering, aerospace engineering, manufacturing, and advanced materials. Accurate mathematical descriptions of elastic deformation assist engineers in designing safer and more efficient structures. Researchers working within this discipline continue to develop improved analytical approaches that address increasingly complex engineering challenges.[2]

Research Profile

Ying-Xin Cui is affiliated with Shanxi Normal University in China and has established a research profile indexed in Scopus under Author ID 57190865359. The available publication metrics include eight indexed documents, twenty-four citations received from twenty-one citing documents, and an h-index of four, reflecting an emerging record of scholarly influence within elasticity and mechanics research.[1]

  • Primary research area: Elasticity.
  • Institution: Shanxi Normal University.
  • Indexed Scopus publications demonstrating academic productivity.
  • Research focused on theoretical and applied mechanics.

Research Contributions

The research contributions associated with Ying-Xin Cui emphasize analytical investigations within elasticity and mechanics. Such work supports improved understanding of material response, structural stability, and engineering analysis through quantitative methodologies. These contributions strengthen scientific knowledge that may be applied to engineering design, computational modeling, and multidisciplinary mechanics research.[2]

  • Advancement of elasticity theory through analytical investigation.
  • Application of mathematical approaches to engineering mechanics.
  • Contribution to peer-reviewed scientific literature.
  • Support for interdisciplinary engineering research.

Publications

The Scopus author profile records eight indexed publications that collectively contribute to the literature of elasticity and mechanics. These publications demonstrate ongoing participation in scholarly communication and provide evidence of research dissemination through internationally recognized scientific journals.[1]

  • Peer-reviewed journal articles in elasticity and mechanics.
  • Research addressing theoretical and applied engineering problems.
  • Studies contributing to scientific understanding of material behavior.

Research Impact

Citation-based indicators suggest that Ying-Xin Cui’s published work has attracted attention from subsequent studies. Citation activity, together with an established Scopus profile and measurable h-index, reflects scholarly engagement and the relevance of the research within the mechanics community. Continued publication and collaboration are expected to further strengthen academic visibility.[1]

Award Suitability

The Innovative Research Award recognizes researchers whose scientific work demonstrates originality, measurable academic impact, and contributions to their respective disciplines. Based on the documented publication record, citation performance, and specialization in elasticity, Ying-Xin Cui presents a research profile that aligns with the scholarly objectives associated with recognition by the Global Mechanics Awards. Evaluation remains subject to the official assessment criteria established by the award organizers.[1]

Conclusion

Ying-Xin Cui has established a documented research presence in elasticity through peer-reviewed publications indexed by Scopus. The available academic metrics demonstrate consistent scholarly activity and measurable research influence. Continued investigations within mechanics are expected to contribute further to theoretical understanding and practical engineering applications, supporting ongoing advancement within the discipline.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ying-Xin Cui, Author ID 57190865359. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57190865359
  2. International literature on elasticity and solid mechanics. Example DOI reference.https://doi.org/10.1016/j.ijsolstr.2019.01.001
  3. Global Mechanics Awards. Official Award Website.https://globalmechanicsawards.com/

Xiangfeng Liang | Damage Mechanics | Best Researcher Award

Mr. Xiangfeng Liang | Damage Mechanics | Best Researcher Award

Jiangsu University | China

Deputy Secretary-General of the Jiangsu High-Performance Alloy Materials Industry Alliance, a dedicated researcher born in October with long-term commitment to the research and development of nickel-based single-crystalline hollow turbine blades for aero engines, author of more than twenty SCI-indexed journal papers, contributor of nineteen national invention patent applications with thirteen successfully granted, active leader and participant in two national-level research projects and five provincial or ministerial-level research projects, widely engaged in numerous enterprise-sponsored technology R & D topics, recognized for successfully completing research projects at two postdoctoral research stations, serving consistently as reviewer for internationally prestigious journals including Materials Science and Engineering A and Journal of Alloys and Compounds, with academic metrics reflecting one hundred citations across ninety-three documents, twenty-five published documents, and an h-index of seven, acknowledged for advancing high-performance alloy materials, turbine blade design, casting optimization, and structural reliability analysis, demonstrating a research career that bridges fundamental materials science with applied industrial innovation, maintaining expertise in alloy design, defect control, microstructural evolution, mechanical properties, thermal barrier coatings, and life prediction methods for high-temperature service components, fostering collaborations that integrate theoretical modeling, experimental validation.

Profile:Β  ScopusΒ 

Featured Publications:

Ji Zhang | origami mechanics | Best Researcher Award

Dr. Ji Zhang | origami mechanics | Best Researcher Award

Lecturer at Yanshan University, China

Lecturer, master’s tutor, and Party Branch Secretary at Yanshan University, specializing in engineering mechanics. Yanshan Scholar and class teacher for the 2022 Mechanics Class 2. PhD from Harbin Institute of Technology, jointly trained at the University of Trento, Italy. Instructor for the Davos project. Leads multiple funded projects, including the National Natural Science Foundation. Published in top-tier journals (CS, IJMS, CJA, AIAA J, JAE) and holds several patents. Focuses on aerospace structural mechanics, advanced materials, flexible composite structures, and functional devices. Reviewer for AIAA J and Journal of Applied Mechanics.

Publication Profile

scopus

Education πŸŽ“

PhD in Mechanics, Harbin Institute of Technology (2018-2022), advised by Prof. Wang Changguo. Joint PhD training at the University of Trento (2021-2022) under Prof. Davide Bigoni & Prof. Francesco Dal Corso. Online joint doctoral training at UC Berkeley (2020-2022) with Prof. Li Shaofan. MSc in Engineering Mechanics, Dalian University of Technology (2015-2018) under Prof. Zhao Guozhong. BSc in Engineering Mechanics, Shandong University of Science and Technology (2011-2015).

Experience πŸ‘¨β€πŸ«

Lecturer, Master’s Supervisor, and Postgraduate Party Branch Secretary at Yanshan University (2022-present). Joint PhD research at the University of Trento (2021-2022). Online doctoral training at UC Berkeley (2020-2022). Conducted research on aerospace structures, functional metamaterials, and folding/unfolding dynamics. Participated in large-scale national projects, including radar stealth analysis and advanced mechanics research. Leads National Natural Science Foundation projects and municipal science initiatives. Instructor for Materials Mechanics (72 hours) and the Davos Project.

Awards & Honors πŸ…

Recipient of Yanshan University Scientific Research Start-up Fund (1 million CNY). Host of the National Natural Science Foundation of China Youth Science Fund Project (300,000 CNY). Qinhuangdao Science and Technology Bureau Project Leader (200,000 CNY). Contributor to a National Major Science and Technology Project (26.52 million CNY). Holds multiple invention patents. Published in leading flagship journals, including AIAA J, IJMS, and JAE. Active reviewer for top-tier journals like AIAA J and the Journal of Applied Mechanics.

Research Focus πŸ”¬

Specializes in aerospace structural mechanics, advanced and flexible composite materials, and structural mechanics. Explores force-electromagnetic coupling, multi-physics interactions, and intelligent metamaterials. Develops origami-based structural innovations, focusing on Kresling intelligence and dynamic folding/unfolding. Investigates stealth mechanisms via origami metasurfaces. Conducts research on aerospace functional devices and applications in structural mechanics. Leads national and municipal projects in smart materials, force coupling, and aerospace applications. Reviewer for high-impact mechanical engineering journals.

Publications πŸ“–

πŸ“„ Design and photothermal coupling analysis of Kresling origami-based intelligent dynamic shading system

Thin-Walled Structures, Vol. 207, Article 112739

Co-authors: Gao, T., Liu, S., Liu, J., Wang, C.

Citations: 0

2024

πŸ“„ Deployment behavior and mechanical property analysis of Kresling origami structure

Composite Structures, Vol. 341, Article 118234

Co-author: Wang, C.

Citations: 2

2022

πŸ“„ Flexible kirigami with local cylindrical shell design for stretchable microstrip antenna

Composite Structures, Vol. 296, Article 115879

Co-authors: Zhang, L., Wang, Y., Wang, C.

Citations: 5

πŸ“„ Kresling origami-inspired reconfigurable antenna with spherical cap

International Journal of Mechanical Sciences, Vol. 227, Article 107470

Co-authors: Zhang, L., Wang, C.

Citations: 35

πŸ“„ Deployment of SMP Miura-ori sheet and its application: Aerodynamic drag and RCS reduction

Chinese Journal of Aeronautics, Vol. 35(8), pp. 121–131

Co-authors: Wang, C., Zhang, L.

Citations: 15

πŸ“„ Pressure-induced instability and its coupled aeroelasticity of inflated pillow

Chinese Journal of Aeronautics, Vol. 35(2), pp. 1–7

Co-authors: Wang, C., Guo, J., Zhang, J.

Citations: 11

πŸ“„ Kirigami-Based Stretchable Low-Radar-Cross-Section Microstrip Antenna: Design and Analysis

AIAA Journal, Vol. 60(3), pp. 1958–1964

Co-authors: Miao, W., Zhang, L., Wang, C.

Citations: 6

πŸ“„ A novel inflatable rings supported design and buoyancy-weight balance deformation analysis of stratosphere airships

Chinese Journal of Aeronautics, Vol. 35(1), pp. 340–347

Co-authors: Gao, W., Ma, T., Wang, C., Tan, H.

Citations: 11

2021

πŸ“„ Aerodynamic Drag Characteristics of Miura-Ori Composite Structure

Journal of Aerospace Engineering, Vol. 34(4), Article 06021004

Co-authors: Li, T., Wang, C., Yan, X.

Citations: 13

2020

πŸ“„ Origami-based metasurfaces: Design and radar cross section reduction

AIAA Journal, Vol. 58(12), pp. 5478–5482

Co-authors: Liu, S., Zhang, L., Wang, C.

Citations: 17

Conclusion

The candidate is an exceptional researcher in origami mechanics, aerospace structures, and intelligent materials. With strong academic credentials, impactful publications, innovation in structural mechanics, and significant research funding, they are highly suitable for the Best Researcher Award. Enhancing global collaborations, industry partnerships, and science communication will further solidify their position as a leading researcher in mechanics and structural engineering.