Mingfu Shao | Physics and Astronomy | Innovative Research Award

Innovative Research Award

Mingfu Shao
NAOC, China

Mingfu Shao
Affiliation NAOC
Country China
Scopus ID 59967009200
Documents 4
Citations 3
h-index 1
Subject Area Physics and Astronomy
Event International Invention Awards
ORCID 0009-0003-1447-2439

Mingfu Shao is a researcher affiliated with NAOC in China whose documented research profile is associated with Physics and Astronomy. The supplied bibliographic record identifies four documents, three citations, and an h-index of one. These indicators provide a concise description of indexed scholarly activity and citation visibility. The profile is presented in connection with the Innovative Research Award under the International Invention Awards framework, based on the available researcher information and bibliographic records. [1]

Abstract

Mingfu Shao is affiliated with NAOC in China and is associated with the academic field of Physics and Astronomy. The supplied Scopus record identifies four documents, three citations, and an h-index of one, providing quantitative indicators of indexed scholarly activity. This profile examines the documented research record in relation to the Innovative Research Award associated with the International Invention Awards. The assessment considers the researcher’s affiliation, subject area, publication activity, citation record, and persistent researcher identification. These bibliometric indicators provide contextual evidence of research activity but should be considered alongside individual research outputs, originality, technical significance, and documented innovation when evaluating broader academic contributions. [1]

Keywords

Mingfu Shao; Innovative Research Award; International Invention Awards; NAOC; Physics and Astronomy; research innovation; scholarly publications; bibliometrics; Scopus; ORCID.

Introduction

Academic research profiles commonly use publication records, citation activity, institutional affiliation, and persistent researcher identifiers to describe scholarly work. Scopus provides bibliographic and citation information that can be used to examine indexed research productivity and impact indicators. [1] In this context, Mingfu Shao’s available record is presented as an academic recognition profile based on supplied bibliographic information.

Research Profile

Mingfu Shao’s research profile is associated with NAOC in China and the subject area of Physics and Astronomy. The supplied Scopus information records four documents, three citations, and an h-index of one. The profile is additionally identified by ORCID 0009-0003-1447-2439, which provides a persistent identifier for distinguishing scholarly contributions and improving attribution across research systems. [1]

Research Contributions

The available record documents four indexed research documents associated with Mingfu Shao. These publications provide evidence of scholarly activity within the identified subject area. However, detailed publication titles, research methods, findings, patents, technologies, or applications have not been supplied in the available profile. Specific claims regarding individual scientific contributions should therefore be based on the original publications and verified bibliographic records.

Publications

The supplied Scopus record lists four documents for Mingfu Shao under Author ID 59967009200. [1] The available information does not provide complete publication metadata such as titles, journal names, publication years, co-authors, or DOI identifiers. Accordingly, no unsupported publication details or DOI numbers are assigned to the researcher in this article.

Research Impact

The supplied profile records three citations and an h-index of one. Citation counts provide an indication of how frequently indexed publications have been cited, while the h-index combines publication productivity with citation thresholds. These measures are useful bibliometric indicators but do not independently measure originality, methodological quality, practical application, or societal significance. [1]

Award Suitability

The documented affiliation with NAOC and subject classification in Physics and Astronomy establish a relevant academic context for an innovation-focused research recognition. The available record also confirms measurable publication and citation activity. However, evidence concerning specific inventions, patents, technological implementation, originality, or practical outcomes is not included in the supplied information. Award assessment should therefore consider the researcher’s submitted materials and the official criteria of the International Invention Awards. [2]

Conclusion

Mingfu Shao’s available academic record identifies an affiliation with NAOC in China and a research area of Physics and Astronomy. Four documents, three citations, and an h-index of one are documented in the supplied Scopus information. [1] These indicators provide a concise bibliometric description of the research profile. A complete assessment of innovative research would require additional evidence concerning individual research findings, originality, inventions, applications, patents, and documented outcomes.

References

  1. Elsevier. (n.d.). Scopus author details: Mingfu Shao, Author ID 59967009200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59967009200
  2. International Invention Awards. (2026.). International Invention Awards official website.
    https://inventionawards.org/
  3. Journal article. (2026.). JW-FD: A 15-Year Multimodal Dataset for Solar Flare Forecasting.
    https://doi.org/10.3390/universe12090281

Masahiro Nishida | Space Engineering | Excellence in Innovation

Prof. Masahiro Nishida | Space Engineering | Excellence in Innovation

Professor, Nagoya Institute of Technology, Japan.

Prof. Masahiro Nishida is a distinguished professor at the Nagoya Institute of Technology and a renowned researcher in the field of mechanical engineering. His expertise spans dynamic responses of solid structures and hypervelocity impact on advanced materials. With over 61 publications in English, Prof. Nishida is recognized for his significant contributions to material science, specifically in the shock compression of condensed matter. He currently serves as the General Manager of the Quality Innovation Techno-Center at the institute.

Profile

Scopus

Orcid

Education 🎓

Prof. Masahiro Nishida holds a Bachelor of Engineering (1991) and a Master of Engineering (1993) from the Tokyo Institute of Technology, where he studied in the Department and Graduate School of Mechanical Engineering, respectively. He completed his Doctor of Engineering degree in 1996, with a thesis titled “Evaluation Method of Mechanical Properties for Material by Phase-Sensitive Acoustic Microscope,” under the supervision of Prof. H. Matsumoto. During his doctoral studies, he also gained international experience as a visiting researcher at Pennsylvania State University in 1995, working in the Acoustic Microscopy Lab. His research focuses on advanced material evaluation techniques, particularly in mechanical properties analysis through acoustic microscopy.

Experience 🛠️

Prof. Masahiro Nishida began his academic career as a Research Associate in the Department of Mechanical Science at Tokyo Institute of Technology from 1996 to 1997, before transitioning to the Nagoya Institute of Technology, where he served as a Research Associate in the Department of Mechanical Engineering from 1997 to 2001. He then became a Lecturer from 2001 to 2004 and an Associate Professor from 2004 to 2018 in the same department. Since 2018, he has held the position of Professor in the Department of Mechanical Engineering at Nagoya Institute of Technology. In 2022, he took on additional responsibilities as the General Manager of the Quality Innovation Techno-Center at the institute. Prof. Nishida also gained international experience as a visiting researcher at LuleĂĄ University of Technology, Sweden, in 2009.

Research Interests 🔬

Prof. Nishida’s research focuses on the dynamic properties of materials, particularly in hypervelocity impact and shock compression of various materials. His key areas of interest include:

Hypervelocity impacts on metal and plastic materials, with applications to space debris bumpers.

Dynamic strength of advanced materials, especially recycled aluminum alloys and additive manufacturing materials.

Dynamics of heterogeneous materials, studying the behavior of aggregated soft particles.
He integrates both experimental and computational approaches in his research.

Awards & Memberships 🏆

Japan Society of Mechanical Engineers (JSME)

Society of Materials Science, Japan (JSMS)

Japan Society for Aeronautical and Space Sciences (JSASS)

Japanese Society for Experimental Mechanics (JSEM)

Society for Experimental Mechanics (SEM)

Hypervelocity Impact Society (HVIS)

Publications Top Notes📚

Anand Pai, et al. “Computational studies on hypervelocity impact of spherical projectiles on whipple shield with hybrid Newtonian fluid-filled core,” Acta Astronautica, 2024, Cited by 2. Link

Slim Djebien, et al. “Strain rate and notch radius effects on evaluating the stress-strain relations using the stepwise modeling method,” Journal of Dynamic Behavior of Materials, 2024. Link

Daichi Kimura, et al. “Effects of Temperature on Crater Size and Ejecta Resulting from Ultra-high Molecular Weight Polyethylene Fiber Composites/Aluminum Alloy Plates,” Journal of Evolving Space Activities, 2023. Link

Ziyi Su, et al. “Evaluation of flow stress in nylon 66 via digital image correlation method and response surface method,” Journal of Mechanical Engineering Science, 2023. Link

Masahiro Nishida, et al. “Effects of Strain Rate on Stress-Strain Curves in 2024 Aluminum Alloy After Solution Heat Treatment,” Materials Transactions, 2022, Cited by  4. Link