Mohammad Noormohammadi | Metal-Matrix Composites | Research and Development Award

Research and Development Award

Mohammad Noormohammadi
Affiliation University of Kashan
Country Iran
Scopus ID 57202373723
Documents 27
Citations 368
h-index 12
Subject Area Metal-Matrix Composites
Event Global Composite Awards
ORCID 0000-0003-0879-5314

Mohammad Noormohammadi

University of Kashan, Iran

The Research and Development Award recognizes sustained scholarly activity, innovation, and measurable scientific contributions that advance research within specialized academic disciplines. Mohammad Noormohammadi, affiliated with the University of Kashan, has established research activities in the field of metal-matrix composites, contributing to materials engineering through investigations involving composite processing, characterization, and performance evaluation.[1] Academic recognition programs such as the Global Composite Awards acknowledge researchers whose work demonstrates scientific quality, originality, and continued contribution to the international research community.[3]

Abstract

Research and development activities within advanced composite materials continue to support technological innovation across aerospace, transportation, manufacturing, and structural engineering. Mohammad Noormohammadi’s academic work is associated with studies involving metal-matrix composites, emphasizing scientific investigation, engineering performance, and materials optimization. The Research and Development Award acknowledges researchers whose publications, scientific collaboration, and innovation contribute to expanding disciplinary knowledge while maintaining recognized standards of scholarly excellence.[1][2]

Keywords

Research and Development Award, Metal-Matrix Composites, Materials Engineering, Composite Materials, Scientific Innovation, University of Kashan

Introduction

Modern engineering increasingly depends upon high-performance composite materials capable of delivering improved strength, durability, corrosion resistance, and lightweight structural characteristics. Metal-matrix composites represent an important branch of advanced materials research because they combine metallic matrices with reinforcing phases to improve mechanical and functional properties. Research within this discipline contributes to both theoretical understanding and industrial applications through experimentation, modeling, and material characterization.[2]

Research Profile

Mohammad Noormohammadi is affiliated with the University of Kashan in Iran. His documented scholarly profile is indexed within Scopus under Author ID 57202373723. His research interests include metal-matrix composites and related materials engineering topics, supporting scientific investigation through peer-reviewed publications and international academic visibility.[1]

Research Contributions

Research involving advanced metal-matrix composite materials. Investigation of processing techniques for engineered composite systems. Evaluation of mechanical and structural performance characteristics. Contribution to peer-reviewed scientific literature within materials science. Support for collaborative academic research and engineering innovation.

Publications

The research output associated with the author’s Scopus profile demonstrates continued scholarly engagement within composite materials and engineering sciences. Bibliographic records indexed through Scopus provide publication history, citation analysis, and author metrics for ongoing academic evaluation.[1]

Research Impact

Research impact is commonly evaluated using publication quality, citation performance, scientific collaboration, and measurable influence on subsequent investigations. Bibliometric indicators available through Scopus provide objective measures that assist institutions, funding organizations, and award committees in evaluating scholarly productivity and academic influence.[1][2]

Award Suitability

Based on publicly available academic profile information, Mohammad Noormohammadi demonstrates characteristics commonly evaluated for research recognition, including documented scholarly publications, subject specialization in metal-matrix composites, and internationally indexed research records. Such attributes align with the objectives of the Research and Development Award, which recognizes sustained scientific contribution, research quality, and professional advancement within engineering and materials science disciplines.[3]

Conclusion

The Research and Development Award represents academic recognition for researchers who contribute to scientific progress through rigorous investigation, innovation, and scholarly dissemination. Mohammad Noormohammadi’s documented research profile in metal-matrix composites reflects continued participation in internationally indexed scientific research and supports consideration within professional recognition programs dedicated to excellence in composite materials research.[1]

References

  1. Elsevier. (2026). Scopus author details: Mohammad Noormohammadi, Author ID 57202373723. Scopus.
    https://www.scopus.com/pages/authors/57202373723
  2. Surfaces and Interfaces (2026). Effect of oxalic acid addition on suppressing oxide deformation and cracking during hard anodization of aluminum in sulfuric acid.
    https://doi.org/10.1016/j.surfin.2026.109451
  3. Global Composite Awards. (2026). International Recognition Program for Composite Materials Research.
    https://globalcompositeawards.com/

Sarah Baghdady | Design of Materials and Components | Research Excellence Award

Research Excellence Award

Sarah Baghdady
Affiliation Faculty of Dentistry, Alexandria University
Country Egypt
Scopus ID 57221291852
Documents 5
Citations 65
h-index 2
Subject Area Design of Materials and Components
Event Global Composite Awards

Dr. Sarah Baghdady

Faculty of Dentistry, Alexandria University

The Research Excellence Award recognizes sustained scholarly achievement, academic leadership, and meaningful scientific contributions within interdisciplinary research. Dr. Sarah Baghdady, affiliated with the Faculty of Dentistry at Alexandria University, has established an academic profile that reflects continued engagement in internationally indexed research and scientific dissemination. Her work demonstrates the integration of evidence-based investigation, collaborative scholarship, and contributions to the advancement of materials-related research themes relevant to design and component development.[1]

Abstract

This article presents an academic overview of Dr. Sarah Baghdady in the context of the Research Excellence Award. The profile highlights scholarly activity, institutional affiliation, scientific productivity, and research relevance associated with Design of Materials and Components. Recognition through international academic awards commonly considers publication quality, citation performance, interdisciplinary collaboration, and sustained contributions to scientific advancement. Dr. Baghdady’s academic record reflects continued participation in peer-reviewed research and global scholarly communication.[1]

Keywords

Research Excellence Award; Sarah Baghdady; Alexandria University; Egypt; Design of Materials and Components; Scientific Research; Composite Materials; Dental Materials; Academic Recognition; Scopus Author.

Introduction

Academic excellence is evaluated through objective measures that include publication quality, citation influence, collaborative engagement, innovation, and contributions to disciplinary development. International recognition programs seek to identify researchers whose work advances scientific understanding while supporting education, technology, and professional practice. Within this context, Dr. Sarah Baghdady represents an academic researcher whose institutional affiliation and indexed publications contribute to ongoing developments in materials-related research and applied scientific investigation.[2]

Research Profile

Dr. Sarah Baghdady is affiliated with the Faculty of Dentistry, Alexandria University, Egypt. Her scholarly activities are indexed within the Scopus database, demonstrating participation in internationally recognized scientific publishing. Her research interests align with Design of Materials and Components, reflecting interdisciplinary engagement between material science, engineering concepts, and biomedical applications. Such research environments encourage innovation through laboratory investigation, analytical methodologies, and evidence-based publication practices.[1]

Research Contributions

Participation in peer-reviewed scientific research indexed through international databases. Contributions to interdisciplinary studies involving materials, design methodologies, and applied biomedical science. Support for scientific collaboration through publication and academic dissemination. Advancement of evidence-based methodologies relevant to material performance and component evaluation. Engagement in internationally visible academic scholarship supporting scientific progress.

Publications

The research output associated with Dr. Sarah Baghdady is indexed through the Scopus Author Profile, where publications, citation metrics, and bibliographic records are maintained. These publications collectively demonstrate continued scientific engagement and contribute to the international research literature relevant to materials science, biomedical applications, and interdisciplinary engineering studies.[1] Representative publications also include articles assigned Digital Object Identifiers (DOIs), enabling persistent scholarly referencing.[3]

Research Impact

Research impact extends beyond publication counts by considering citation influence, scientific reproducibility, interdisciplinary collaboration, and practical application of research findings. Indexed scholarly activity provides measurable indicators of academic visibility while facilitating global access to scientific knowledge. Dr. Baghdady’s academic profile reflects ongoing participation in this internationally connected research ecosystem.[2]

Award Suitability

Based on publicly indexed academic information, Dr. Sarah Baghdady demonstrates characteristics commonly evaluated during scholarly recognition processes, including sustained publication activity, institutional research engagement, international indexing, and interdisciplinary scientific contributions. These factors support consideration for recognition through the Global Composite Awards Research Excellence Award while remaining subject to the formal evaluation criteria established by the organizing committee.[4]

Conclusion

Dr. Sarah Baghdady’s academic profile illustrates continued participation in internationally indexed scientific research and interdisciplinary scholarship. Her affiliation with Alexandria University, combined with documented research activities within materials-related fields, reflects a commitment to advancing scientific knowledge through peer-reviewed publication and academic collaboration. These attributes align with the objectives of international research recognition programs dedicated to excellence in scholarly achievement.[1]

References

  1. Elsevier. (2026). Scopus Author Details: Dr. Sarah Baghdady, Author ID 57221291852. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221291852
  2. BMC Oral Health. (2026). Targeted nanocomposite delivery system of amygdalin using chitosan/reduced graphene oxide-zinc oxide/hyaluronic acid for treatment of head and neck squamous cell carcinoma.
    https://doi.org/10.1186/s12903-026-07943-1/
  3. Oral Oncology. (2026). Amygdalin delivery via a hybrid hyaluronic acid–chitosan/carbon–metal oxide nanocomposite: In silico and in vivo anticancer evaluation in chemically induced squamous cell carcinoma mouse model.
    https://doi.org/10.1016/j.oraloncology.2026.108073
  4. Global Composite Awards. (2026). Research Excellence Award Information.
    https://globalcompositeawards.com/

Fei Liu | Processing and Manufacturing | Research Excellence Award

Fei Liu | Processing and Manufacturing | Research Excellence Award

Mr. Fei Liu at Hefei University of Technology | China

Dr. Fei Liu is a researcher at Hefei University of Technology with expertise in advanced manufacturing and laser welding of dissimilar materials. His work primarily focuses on Al/Cu laser-welded joints, emphasizing the role of filler materials, interlayers, and alloying elements in controlling microstructure and mechanical properties. He has published recent open-access studies on Ag-based fillers and Al–Si welding wires to enhance joint strength and performance. His research contributes to lightweight structural design and electronic packaging applications. Dr. Liu has authored 30 Scopus-indexed documents. These publications have received 808 citations from 681 citing documents. He currently holds an h-index of 14, reflecting his growing impact in welding and precision engineering research.

 

Citation Metrics (Scopus Preview)

900
675
450
225
0

Citations
808

Documents
30

h-index
14

Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β   🟦 Citations Β Β  πŸŸ₯ Documents Β Β  🟩 h-index

Featured Publications

Effect of Silicon Content in Al–Si Welding Wire on Mechanical Properties of Al/Cu Laser Welded Joint

International Journal of Precision Engineering and Manufacturing, 2024 Β· Citations: 0

Microstructure and Performance Study of Al/Cu Laser Welding with Ag Interlayer

International Journal of Precision Engineering and Manufacturing, 2024 Β· Citations: 9

Ahmed Hashem | Design of Materials and Components | Outstanding Scientist Award

Ahmed Hashem | Design of Materials and Components | Outstanding Scientist Award

Prof. Ahmed Hashem at National Research Centre (NRC) | Egypt

Ahmed M. Hashem is a Professor of Inorganic Chemistry at the National Research Center, Cairo, Egypt, specializing in the development of advanced materials for energy storage applications. His research focuses on lithium-ion batteries, exploring both anode and cathode materials, including Co-free Ni-rich layered oxides, ilmenite, and molybdenum disulfide nanoparticles. He has extensively investigated the electrochemical behavior, structural properties, and enhanced capacity mechanisms of transition metal oxide electrodes. Hashem also works on green synthesis approaches for metal and metal oxide nanoparticles and their composites, targeting high-performance supercapacitors and sustainable energy storage solutions. His studies integrate material modification, doping strategies, and nanostructuring to improve energy density, stability, and environmental compatibility. Overall, his work bridges fundamental inorganic chemistry and applied electrochemical energy research, contributing significantly to next-generation battery technologies.

Citation Metrics (Scopus)

2000
1500
1000
500
0

Citations
1,820

Documents
69

h-index
26

Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β   🟦 CitationsΒ  Β  Β  πŸŸ₯ DocumentsΒ  Β   🟩 h-index

Featured Publications

Integrated Lithium-Rich Layered Cathode Nanomaterials for High-Performance Lithium-Ion Batteries

International Journal of Molecular Sciences, Vol. 26(3), Article 1346, 2025

Anteneh Belayneh Melese | Processing and Manufacturing | Editorial Board Member

Anteneh Belayneh Melese | Processing and Manufacturing | Editorial Board Member

Mr. Anteneh Belayneh Melese at Debre Markos University | Ethiopia

Anteneh Belayneh Melese is a dynamic pharmaceutical researcher and Lecturer of Pharmaceutics at Debre Markos University, Ethiopia, whose scholarly work spans pharmacokinetics, drug–food interactions, pediatric pharmaceutics, public health, and evidence-based medicine. His research has significantly advanced understanding of antidiabetic flavonoids through computational approaches, particularly molecular docking and density functional theory, revealing their pharmacokinetic behavior and drug-likeness properties. He has also contributed a widely referenced review on the influence of coffee consumption on drug pharmacokinetics, synthesizing evidence on how caffeine and related compounds alter drug metabolism and absorption, which has become a critical resource for clinicians and pharmacists. His investigations into the safety, stability, and biopharmaceutical challenges of excipients in pediatric formulations highlight major gaps in off-label pediatric drug compounding, emphasizing toxicity risks, formulation instability, and regulatory limitations. Anteneh’s impactful commentary on the off-label use of chloroquine and hydroxychloroquine for COVID-19 treatment in Africa critically examined their clinical risks and helped guide rational therapeutic decisions during the pandemic. His contributions also extend to ethnomedicine and public health, including systematic reviews on medicinal animals, traditional remedies for hemorrhoids, and antimicrobial resistance patterns among pediatric patients, reflecting a strong commitment to integrating indigenous knowledge with modern healthcare. Additionally, his research on medication non-adherence among diabetic patients and improper metered-dose inhaler techniques underscores his focus on patient-centered pharmaceutical care. Anteneh has further advanced pharmaceutics through formulation work, including optimizing monolithic fixed-dose combinations and orodispersible tablets for improved therapeutic outcomes. With over a decade of scientific engagement, more than 500 citations, and collaborations with international chemists, pharmacologists, and biochemists, his research portfolio demonstrates strong interdisciplinary impact. His body of work collectively strengthens pharmaceutical sciences, enhances medication safety, and supports the development of accessible, evidence-based healthcare solutions in Ethiopia and beyond.

Profile:Β  GoogleScholar
Featured PublicationsΒ 

Ali Rafe | Processing and Manufacturing | Excellence in Research

Prof. Ali Rafe | Processing and Manufacturing |Excellence in Research

Full Professor atΒ  Research Institute of Food Science and Tehcnology, Germany

Professor Ali Rafe is an accomplished researcher and educator in food science and engineering with extensive academic and professional achievements. He holds a Ph.D. in food engineering, has completed a postdoctoral fellowship as a George Foster Fellow at WWU MΓΌnster, and is currently a Full Professor at the Research Institute of Food Science & Technology (RIFST), Iran. His research focuses on food rheology, encapsulation technologies, and structural analysis, with over 16 recent peer-reviewed publications in high-impact journals like Food Hydrocolloids and International Journal of Biological Macromolecules. Recognized globally, he has received the prestigious Alexander von Humboldt Research Award and has contributed to industry advancements through leadership roles in quality control and technical supervision. Proficient in advanced computational tools, Professor Rafe integrates technology and innovation to address complex challenges in food science. His work bridges academia and industry, positioning him as a leader in his field with global impact.

Professional profile

Education

Professor Ali Rafe has an extensive and well-rounded academic background in food science and engineering. He earned his Ph.D. in food engineering from Ferdowsi University of Mashhad, Iran, where his dissertation focused on the rheological, thermal, and structural properties of Ξ²-lactoglobulin-basil seed hydrocolloid mixtures. He also holds an M.Sc. in food science and technology from the same institution, where he explored the potential of ultrafiltration membranes in oil refining processes. His undergraduate studies were completed at the University of Tabriz, where he specialized in food process engineering and food chemistry. Furthering his expertise, he conducted postdoctoral research as a George Foster Fellow at WWU MΓΌnster, Germany, and served as a research scholar in chemical and biomolecular engineering at North Carolina State University, USA. With advanced coursework in food rheology, modeling, and applied mathematics, Professor Rafe’s academic foundation reflects his strong focus on innovation and problem-solving in food engineering.

Professional Experience

Professor Ali Rafe has a distinguished professional career that spans academia, research, and industry. Currently a Full Professor at the Research Institute of Food science & Technology (RIFST) in Mashhad, Iran, he has progressively advanced through roles as Assistant and Associate Professor since 2011. Internationally recognized, he was awarded the prestigious Alexander von Humboldt Research Fellowship and conducted postdoctoral research at WWU MΓΌnster, Germany. His earlier experiences include serving as a research scholar at North Carolina State University, USA, and working as a lecturer at various universities, teaching specialized courses such as oil technology and food packaging. In the food industry, he has held roles as a quality control supervisor and technical manager at Nutricia-Mashhad Milk Powder and Seh-Gol Khorasan, focusing on edible oil extraction and refinement. This blend of academic and industrial expertise underscores Professor Rafe’s ability to bridge research and practical applications in food science and engineering.

Research Interest

Professor Ali Rafe’s research interests are centered around innovative advancements in food science and engineering, with a strong focus on food rheology, encapsulation technologies, and the structural and thermal properties of food systems. He is particularly passionate about exploring the interactions between proteins, polysaccharides, and hydrocolloids to develop functional food systems with enhanced stability and performance. His work also delves into complex coacervation and phase separation behaviors, which are critical for designing efficient delivery systems for bioactive compounds such as antioxidants and essential oils. Additionally, Professor Rafe is deeply invested in the application of advanced rheological and textural analysis techniques to improve the quality, safety, and functionality of food products. By integrating modeling, simulation, and innovative processing methods, his research aims to address challenges in food product development, contributing to sustainability and health-focused advancements in the global food industry.

Award and Honor

Professor Ali Rafe has received notable awards and honors that highlight his exceptional contributions to food science and engineering. A significant achievement in his career is being awarded the prestigious Alexander von Humboldt (AvH) Research Fellowship, recognizing his innovative research and global impact. This fellowship enabled him to conduct postdoctoral research at WWU MΓΌnster in Germany, further advancing his expertise in food rheology and encapsulation technologies. His career progression from Assistant Professor to Full Professor at the Research Institute of Food https://globalcompositeawards.com/ali-rafe-processing-and-manufacturing-excellence-in-research-9948/Science & Technology (RIFST) also reflects the recognition of his academic excellence and leadership in his field. Additionally, his research outputs, published in high-impact journals, have earned him respect in the international scientific community. These accolades underscore Professor Rafe’s dedication to advancing food science, his influential role in fostering academic collaborations, and his contribution to solving complex challenges in food engineering and technology.

Conclusion

Ali Rafe appears highly qualified for theΒ Excellence in ResearchΒ award, given his extensive education, research experience, numerous high-impact publications, and international recognition. His work aligns well with the goals of such an award, particularly in the area of food engineering and science. Areas for improvement include expanding the industrial application of his work and enhancing his research’s visibility outside academic settings. However, overall, his contributions to the field of food science and technology position him as a strong candidate for this honor.

Publication Top noted

  • Title: The physical properties of pistachio nut and its kernel as a function of moisture content and variety: Part I. Geometrical properties
    Authors: SMA Razavi, B Emadzadeh, A Rafe, AM Amini
    Year: 2007
    Citations: 138
  • Title: Dynamic viscoelastic study on the gelation of basil seed gum
    Authors: A Rafe, SMA Razavi
    Year: 2013
    Citations: 115
  • Title: Rheology and microstructure of basil seed gum and Ξ²-lactoglobulin mixed gels
    Authors: A Rafe, SMA Razavi, R Farhoosh
    Year: 2013
    Citations: 107
  • Title: Kinetic study of ΞΊ-carrageenan degradation and its impact on mechanical and structural properties of chitosan/ΞΊ-carrageenan film
    Authors: M Shahbazi, G Rajabzadeh, R Ettelaie, A Rafe
    Year: 2016
    Citations: 105
  • Title: Rheological and structural characteristics of whey protein-pectin complex coacervates
    Authors: M Raei, A Rafe, F Shahidi
    Year: 2018
    Citations: 101
  • Title: Physico-mechanical and structural characteristics of blend film of poly (vinyl alcohol) with biodegradable polymers as affected by disorder-to-order conformational transition
    Authors: M Shahbazi, G Rajabzadeh, A Rafe, R Ettelaie, SJ Ahmadi
    Year: 2017
    Citations: 83
  • Title: Application of whey protein-pectin nano-complex carriers for loading of lactoferrin
    Authors: M Raei, F Shahidi, M Farhoodi, SM Jafari, A Rafe
    Year: 2017
    Citations: 80
  • Title: Scaling law, fractal analysis and rheological characteristics of physical gels cross-linked with sodium trimetaphosphate
    Authors: A Rafe, SMA Razavi
    Year: 2017
    Citations: 75
  • Title: Physical properties of pistachio nut and its kernel as a function of moisture content and variety. Part II. Gravimetrical properties
    Authors: SMA Razavi, A Rafe, TM Moghaddam, AM Amini
    Year: 2007
    Citations: 74
  • Title: Effect of thermal treatment on chemical structure of Ξ²-lactoglobulin and basil seed gum mixture at different states by ATR-FTIR spectroscopy
    Authors: A Rafe, SMA Razavi
    Year: 2015
    Citations: 72
  • Title: Rheological and structural properties of rice bran protein-flaxseed (Linum usitatissimum L.) gum complex coacervates
    Authors: E Hasanvand, A Rafe
    Year: 2018
    Citations: 68
  • Title: Physicochemical, functional, and nutritional characteristics of stabilized rice bran from Tarom cultivar
    Authors: A Rafe, A Sadeghian, SZ Hoseini‐Yazdi
    Year: 2017
    Citations: 64

Gan Li | Manufacturing Technology | Best Researcher Award

Gan Li | Manufacturing Technology | Best Researcher Award

Dr. Gan Li, College of Mechanical and Electronic Engineering, China University of Petroleum, China.

Publication profile

Scopus
Orcid
Googlescholar

Education and Experience

  • πŸŽ“Β Ph.D. in Mechanical Engineering (2018–2024)
    Dalian University of Technology, GPA 3.83/4.0
  • πŸŽ“Β B.S. in Mechanical Engineering & Engineering Management (2014–2018)
    China University of Petroleum, Ranked Top 4% (7/196)
  • πŸ’ΌΒ Assistant Professor
    College of Mechanical and Electronic Engineering, China University of Petroleum
  • πŸ”¬Β Key Researcher
    National Engineering Research Center of Marine Geophysical Prospecting

Suitability For The Award

Dr. Gan Li, an Assistant Professor at the College of Mechanical and Electronic Engineering, China University of Petroleum, PR China, and a key member of the National Engineering Research Center of Marine Geophysical Prospecting and Exploration and Development Equipment, is an exceptional candidate for the Best Researcher Award. With a strong foundation in advanced manufacturing technologies and ultra-precision machining, Dr. Li’s innovative research has redefined the frontiers of mechanical engineering, making significant contributions to precision manufacturing, signal analysis, and process simulation.

Professional DevelopmentΒ 

  • πŸ†Β Outstanding Senior Thesis (12/89), Jiangsu, China (2023)
  • πŸ…Β Third Prize, Future Flying Machine Innovation Competition, Dalian, China (2019)
  • πŸŽ–οΈΒ Recognition at the 22nd Chinese Conference of Abrasive Technology

Publications Top Notes

  • Undeformed chip thickness models for precise vertical-spindle face grinding of tungsten heavy alloy
    πŸ“–Β Precision Engineering, 2024,Β Cited by: 3
  • Wheel wear of tungsten heavy alloy precision grinding and its influence mechanism on surface quality
    πŸ“–Β Journal of Hunan University Natural Sciences, 2024
  • Research on grinding wheel wear measurement methods: Current status and future perspectives
    πŸ“–Β Scientia Sinica Technologica, 2024
  • A grinding force model and surface formation mechanism of cup wheels considering crystallographic orientation
    πŸ“–Β Journal of Materials Processing Technology, 2023,Β Cited by: 9
  • An online monitoring methodology for grinding state identification based on real-time signal of CNC grinding machine
    πŸ“–Β Mechanical Systems and Signal Processing, 2023,Β Cited by: 12
  • Cutting chatter in ultrasonic elliptical vibration cutting and its influence on surface roughness and tool wear
    πŸ“–Β Metals, 2023,Β Cited by: 6