Andre Guimaraes | Properties and Performance | Best Researcher Award

Best Researcher Award

Andre Guimaraes |  University of Beira Interior, Portugal
Andre Guimaraes
Affiliation University of Beira Interior
Country Portugal
Scopus ID 58312704200
Documents 22
Citations 57
h-index 4
Subject Area Properties and Performance
Event Global Composite Awards
ORCID 0000-0001-6346-5719

Andre Guimaraes is a Portuguese researcher whose academic work spans engineering, industrial management, advanced manufacturing, Industry 4.0, productivity analysis, polymer processing, and the evaluation of material and process performance. His research record is associated with the University of Beira Interior and research activities involving the CISE – Electromechatronic Systems Research Centre, while his scholarly profile also records collaborations with the Polytechnic Institute of Viseu and CISeD – Research Centre for Digital Services. [1] Within the thematic context of Properties and Performance, his work on laser processing of polypropylene provides a direct materials-oriented example in which processing parameters, local hardness, heat-affected regions, and weld characteristics are quantitatively investigated. [2]

Abstract

This academic recognition profile examines the research record of Andre Guimaraes in relation to the Best Researcher Award and the thematic area of Properties and Performance. His research combines manufacturing engineering, industrial systems, digital transformation, process optimization, material characterization, and quantitative performance assessment. A notable materials-focused contribution investigates laser-induced changes in polypropylene plates, relating laser power and scanning speed to weld geometry, heat-affected zones, and through-thickness hardness. His broader research also considers the relationship between Lean methodologies, Industry 4.0 technologies, and organizational productivity, providing an interdisciplinary perspective on performance at both material and industrial-system levels. [2] [3]

Keywords

Properties and Performance; polypropylene; polymer processing; laser welding; mechanical properties; local hardness; manufacturing technology; Industry 4.0; Lean manufacturing; productivity; process optimization; advanced manufacturing; materials engineering; digital transformation; performance assessment.

Introduction

Guimarães’ academic trajectory reflects this multi-scale understanding of performance. His research profile identifies engineering and technology as a principal knowledge domain and records doctoral-level work in industrial engineering and management at the University of Beira Interior. His publications extend from digital readiness and Industry 4.0 implementation to manufacturing processes and polymer behavior, demonstrating an interdisciplinary approach in which experimental measurements and empirical data are used to examine the factors that influence engineering outcomes. [1] [2] [3]

Research Profile

The bibliometric information supplied for this recognition profile records 22 documents, 57 citations, and an h-index of 4. These indicators provide a quantitative snapshot of research dissemination and citation activity. Bibliometric measures should nevertheless be interpreted together with publication quality, methodological contribution, subject relevance, collaboration, and the practical significance of individual research outputs. [5]

Research Contributions

A directly relevant contribution to Properties and Performance is the investigation of laser parameters and through-thickness hardness in polypropylene plates. The study evaluates how laser power and scanning speed influence the heat-affected zone, weld-bead dimensions, and hardness distribution. The reported results indicate that the interaction between processing power and scanning speed affects weld geometry, while higher scanning speeds and lower power levels can promote a more uniform hardness distribution through the material thickness. [2]

Publications

Selected publications illustrate the breadth of Guimarães’ research across materials processing, manufacturing technology, productivity, and industrial digitalization. The following publications are particularly relevant to the academic profile described on this page. “Industry 4.0 – Assessment of Digital Readiness of Manufacturing Companies in Portugal.” Published in the proceedings of the IEEE International Conference on Industrial Engineering and Engineering Management, addressing digital readiness in Portuguese manufacturing organizations. [4]

Research Impact

The materials-oriented study on polypropylene has practical relevance because hardness distribution and heat-affected-zone behavior are important indicators of process quality in thermoplastic laser processing. By examining the relationship between controllable laser settings and resultant material characteristics, the study provides evidence useful for understanding how manufacturing parameters influence local performance. Guimarães’ research on Lean methodologies and Industry 4.0 broadens this performance-oriented perspective to industrial organizations. The work considers productivity not solely as a technological outcome but as a result influenced by implementation duration, operational practices, organizational integration, and digital technologies. [2] [3]

Award Suitability

In the context of the Global Composite Awards, evaluation for a Best Researcher Award under the Properties and Performance theme may consider the relevance of a candidate’s research to material behavior, manufacturing performance, experimental methodology, engineering applicability, research dissemination, and interdisciplinary contribution. Guimarães’ publication on polypropylene laser processing demonstrates direct engagement with material-property evaluation through the measurement of hardness and the analysis of processing-induced changes. [2]

Conclusion

Andre Guimaraes academic profile presents an interdisciplinary research trajectory connecting materials behavior, manufacturing technology, industrial engineering, digital transformation, and productivity. His work on laser-processed polypropylene is especially relevant to Properties and Performance because it directly examines how controllable processing parameters influence local hardness, weld geometry, and material response. [2] [3]

References

  1. Ciência Vitae. (2026). Andre Guimaraes: Curriculum Vitae and researcher identifiers, Ciência ID AE12-CE94-82B0. The profile identifies ORCID 0000-0001-6346-5719, Scopus Author ID 58312704200, engineering and technology as a knowledge field, and doctoral studies at the University of Beira Interior.
    https://www.cienciavitae.pt/en/AE12-CE94-82B0
  2. Guimarães, A., Gomes, D., Vieira, A., & Oliveira, S. M. (2025). Effect of Laser Parameters on Through-Thickness Local Hardness of Polypropylene Plates. Materials, 18(11), 2638. The study investigates laser power, scanning speed, heat-affected zones, weld geometry, and hardness distribution in polypropylene plates.DOI: https://doi.org/10.3390/ma18112638
  3. Guimarães, A., Oliveira, E. e, Oliveira, M., & Pereira, T. (2025). Effects of Lean Tools and Industry 4.0 Technology on Productivity: An Empirical Study. Journal of Industrial Information Integration, 44, 100787. Elsevier.DOI: https://doi.org/10.1016/j.jii.2025.100787
  4. DBLP. (n.d.). Andre Guimaraes publication bibliography. DBLP Computer Science Bibliography. The bibliography records publications including “Industry 4.0 – Assessment of Digital Readiness of Manufacturing Companies in Portugal” and research on Lean tools, Industry 4.0, and productivity.https://dblp.org/pid/374/0003
  5. Elsevier. (2026). Scopus author details: Andre Guimaraes, Author ID 58312704200. Scopus.https://www.scopus.com/authid/detail.uri?authorId=58312704200
  6. ORCID. (2026). Andre Guimaraes, ORCID 0000-0001-6346-5719. ORCID Registry.https://orcid.org/0000-0001-6346-5719
  7. Google Scholar. (2026). Andre Guimaraes academic profile and scholarly publications. Google Scholar.https://scholar.google.com/citations?user=EtybQFIAAAAJ&hl=en&oi=sra
  8. Global Composite Awards. (2026). Global Composite Awards – Academic and research recognition platform.https://globalcompositeawards.com/

Sajjad Noura | Properties and Performance | Innovative Research Award

Innovative Research Award

Sajjad Noura
Affiliation Ecole De Technologie Superieure
Country Canada
Scopus ID 57226365526
Documents 9
Citations 148
h-index 4
Subject Area Properties and Performance
Event Global Composite Awards
ORCID 0000-0002-0192-0429

Sajjad Noura

Ecole De Technologie Superieure, Canada

Sajjad Noura is a researcher affiliated with Ecole De Technologie Superieure, Canada, whose scholarly work has contributed to the study of composite materials with an emphasis on material properties, structural performance, and engineering optimization. His publications demonstrate sustained engagement with advanced materials research and multidisciplinary engineering applications. Based on documented scholarly output, citation performance, and research visibility indexed in Scopus, his work reflects continuing contributions to composite engineering and related technological developments.[1]

Abstract

The Innovative Research Award recognizes researchers whose published work demonstrates meaningful scholarly advancement within their respective disciplines. Sajjad Noura’s documented research activity focuses on composite material properties, engineering performance, and analytical evaluation of advanced structural systems. His publication record, citation metrics, and research visibility indicate an active contribution to materials science and composite engineering research.[1]

Keywords

Composite Materials, Properties and Performance, Mechanical Engineering, Structural Optimization, Advanced Materials, Research Evaluation

Introduction

Research on composite materials continues to support developments in transportation, aerospace, manufacturing, and infrastructure by improving mechanical efficiency and structural reliability. Investigations into material properties and performance provide the scientific foundation for designing lightweight and durable engineering systems. Sajjad Noura’s academic publications contribute to this broader research landscape through studies addressing engineering behaviour, material characterization, and performance assessment.[2]

Research Profile

According to indexed scholarly records, Sajjad Noura has authored nine Scopus-indexed documents that have collectively received 148 citations, resulting in an h-index of 4. His research primarily falls within the subject area of Properties and Performance, emphasizing analytical evaluation, material behaviour, and engineering applications involving composite systems. These metrics illustrate measurable scholarly engagement within the international research community.[1]

Research Contributions

 

Investigation of mechanical behaviour and performance characteristics of composite materials. Evaluation of material properties relevant to engineering design and structural optimization. Contribution to experimental and analytical methodologies for advanced material systems. Support for interdisciplinary engineering applications through materials research. Publication of peer-reviewed studies contributing to the composite engineering literature.[2]

Publications

The publication portfolio includes peer-reviewed research addressing engineering materials, composite performance, and related analytical investigations. The available Scopus record demonstrates continued scholarly dissemination through internationally indexed publications, supporting research visibility and citation growth.[1] Representative publications are associated with persistent digital object identifiers (DOIs), facilitating long-term academic accessibility.[3]

Research Impact

Citation indicators demonstrate that Sajjad Noura’s research has been referenced by subsequent scientific publications, indicating scholarly recognition within the composite materials community. His work contributes to ongoing investigations involving engineering materials, structural analysis, and performance evaluation, supporting future research and technological innovation.[1]

Award Suitability

The Innovative Research Award acknowledges measurable academic achievement supported by documented scholarly evidence. Sajjad Noura’s publication record, citation performance, research specialization in Properties and Performance, and continued contribution to composite engineering align with the objectives of the Global Composite Awards, which recognize excellence in scientific innovation and engineering research.[4]

Conclusion

Sajjad Noura has established an identifiable scholarly profile through publications focused on composite material properties and engineering performance. Indexed research metrics, citation evidence, and continued academic dissemination illustrate an active contribution to materials science and provide an appropriate foundation for recognition through the Innovative Research Award within the Global Composite Awards program.[1]

References

  1. Elsevier. (2026). Scopus author details: Sajjad Noura, Author ID 57226365526. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57226365526
  2. Scientific literature concerning composite materials, mechanical properties, and engineering performance published in peer-reviewed journals.
    https://doi.org/10.1016/j.compositesa.2019.105553
  3. Construction and Building Materials. (2025). An integrated packing-moisture control approach in bitumen-stabilized materials (BSM) design.
    https://doi.org/10.1016/j.conbuildmat.2025.142819
  4. Global Composite Awards. (2026). Recognition of excellence in composite materials research and innovation.
    https://globalcompositeawards.com/

Abdul Vahap Korkmaz | Properties and Performance | Best Researcher Award

Abdul Vahap Korkmaz | Properties and Performance | Best Researcher Award

Mr. Abdul Vahap Korkmaz at Afyon Kocatepe University | Turkey

Abdul Vahap Korkmaz, Afyon Kocatepe Üniversitesi’nde görev yapan ve çimento teknolojisi, öğütme teknolojileri, kimyasal madencilik ve yapı malzemeleri alanlarında çalışan bir araştırmacıdır. Çalışmaları özellikle çimento hammaddelerinin mekanik ve termal aktivasyonu, alternatif hammaddelerin (meta-şist, tüf, atık malzemeler) klinker ve çimento performansına etkileri ile enerji verimliliğine odaklanmaktadır. Ayrıca radyasyon zırhlama özelliklerine sahip çimento ve kompozit malzemeler üzerine yürüttüğü araştırmalar, yapı malzemelerinin ileri fonksiyonel uygulamalarına katkı sunmaktadır. Endüstriyel öğütme sistemlerinin performans karşılaştırmaları ve çimento üretim süreçlerinin optimizasyonu, çalışmalarının önemli bir bölümünü oluşturmaktadır. Bunun yanında iş sağlığı ve güvenliği, COVID-19’un işçiler üzerindeki etkileri ve büyük ölçekli şantiyelerde risk değerlendirmesi gibi uygulamalı sosyal ve endüstriyel konularda da yayınları bulunmaktadır. Toplamda 200’ün üzerinde atıf, 7 h-indeksi ve disiplinlerarası yaklaşımıyla, çimento ve yapı malzemeleri araştırmalarına hem akademik hem de endüstriyel açıdan önemli katkılar sağlamıştır.

Citation Metrics (Google Scholar)

250
200
150
100
0

Citations
201

Documents
30+

h-index
7

                           🟦 Citations     🟥 Documents     🟩 h-index

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Costel Pleşcan | Properties and Performance | Research Excellence Award

Costel Pleşcan | Properties and Performance | Research Excellence Award

Assoc. Prof. Dr. Costel Pleşcan at Transilvania University | Romania

Costel Pleşcan is a researcher affiliated with Universitatea Transilvania din Brașov whose scholarly work focuses on higher education in construction-related disciplines, with particular attention to educational adaptation, pedagogical innovation, and entrepreneurial training. With 11 published documents, 48 citations, and an h-index of 4, his research demonstrates a growing and focused impact within the fields of engineering education and applied educational studies. A central theme of his work is the transformation of university education in response to systemic challenges, most notably examined through his recent open-access publication on the impact of the COVID-19 pandemic on construction education. In this research, he analyzes how universities adapted teaching, learning, and assessment processes during periods of disruption, highlighting both the challenges faced and the innovative strategies adopted to sustain educational quality. His work places strong emphasis on entrepreneurial training for construction students, recognizing the importance of equipping future professionals with adaptive skills, innovation capacity, and practical problem-solving abilities in uncertain economic and social contexts. By exploring curriculum adjustments, digital learning environments, and institutional responses, his research contributes to a deeper understanding of resilience and modernization in engineering and construction education. Costel Pleşcan’s scholarly output reflects an interdisciplinary orientation, bridging technical education, pedagogy, and entrepreneurship, and aligning academic training with labor market and industry needs. Overall, his research supports the development of flexible, student-centered, and innovation-driven educational models, offering valuable insights for educators, academic leaders, and policymakers seeking to strengthen construction and engineering education in times of rapid change and global uncertainty.

Citation Metrics (Scopus)

50
40
30
20
10
0

Citations
48

Documents
11

h-index
4

                          🟦 Citations  🟥 Documents  🟩 h-index

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