Akinbo Bayo Johnson | Plasticity | Best Researcher Award

 

Best Researcher Award

Akinbo Bayo Johnson 
Federal College of Education Abeokuta, Ogun State, Nigeria
Akinbo Bayo Johnson
Affiliation Federal College of Education Abeokuta, Ogun State
Country Nigeria
Google Scholar ID JTHGT20AAAAJ
Citations 215
h-index 9
i10-index 9
Subject Area Plasticity
Event Global Mechanics Awards

Akinbo Bayo Johnson is a researcher affiliated with the Federal College of Education Abeokuta in Ogun State, Nigeria, whose stated subject area is Plasticity. The supplied academic profile records 215 citations, an h-index of 9, and an i10-index of 9 on Google Scholar. These bibliometric figures provide a quantitative snapshot of the scholarly record associated with the supplied researcher profile. [1]

Introduction

This academic recognition profile presents the available information for Akinbo Bayo Johnson in relation to the Best Researcher Award associated with the Global Mechanics Awards. The profile is based on the researcher information supplied for this article and the corresponding Google Scholar profile identifier. The purpose of the page is to organize affiliation, research subject, bibliometric indicators, scholarly contribution, and award relevance in a concise academic format. [1] [2]

Abstract

Akinbo Bayo Johnson is affiliated with the Federal College of Education Abeokuta, Ogun State, Nigeria, and is identified within the supplied profile as working in the subject area of Plasticity. The available Google Scholar record associated with the supplied identifier reports 215 citations, an h-index of 9, and an i10-index of 9. [1] This profile examines these indicators alongside the stated research area to provide a structured academic recognition overview for consideration under the Best Researcher Award at the Global Mechanics Awards. [2]

Keywords

Keywords: Akinbo Bayo Johnson; Best Researcher Award; Plasticity; mechanics; materials research; academic research; bibliometrics; citation impact; h-index; i10-index; Federal College of Education Abeokuta; Nigeria; Global Mechanics Awards.

Research Profile

The supplied profile identifies Akinbo Bayo Johnson with the Federal College of Education Abeokuta in Ogun State, Nigeria, and associates the researcher with Plasticity. The research-area designation provides the principal subject context for this recognition profile. [1]

Metric Reported Value Profile Context
Citations 215 Citation count reported for the supplied Google Scholar profile
h-index 9 Bibliometric indicator reported in the supplied profile
i10-index 9 Number of publications reported as having at least ten citations
Subject Area Plasticity Research subject supplied for the award profile

Research Contributions

Within the information supplied for this profile, Plasticity is identified as the principal subject area associated with Akinbo Bayo Johnson. In an academic recognition context, research contributions in this field may be evaluated through the quality, relevance, originality, dissemination, and scholarly influence of published research. The available bibliometric indicators offer quantitative evidence of scholarly visibility, while detailed assessment of individual contributions requires examination of the underlying publications and research outputs. [1]

The reported citation count of 215, together with an h-index of 9 and i10-index of 9, indicates that the supplied Google Scholar profile contains a body of work that has received measurable academic citation. These indicators should be interpreted as descriptive bibliometric measures rather than as standalone measures of research quality. [1]

Publications

The supplied input does not provide an itemized publication bibliography or individual publication titles for Akinbo Bayo Johnson. Accordingly, no publication titles, journal names, publication years, or DOI identifiers have been added without supporting bibliographic information. The researcher’s Google Scholar profile provides the appropriate external source for reviewing the publication record associated with the supplied researcher identifier. [1]

For formal award evaluation, individual publications may be reviewed according to bibliographic quality, relevance to the stated research area, scholarly contribution, citation performance, and evidence of research influence.

Research Impact

The supplied Google Scholar indicators provide a concise quantitative view of the researcher’s citation footprint. A total of 215 citations, an h-index of 9, and an i10-index of 9 can be used as supporting bibliometric evidence when considering scholarly visibility and the continuing use of published research by other researchers. [1]

Research impact should nevertheless be assessed using multiple forms of evidence. Citation indicators can be complemented by publication quality, research collaborations, practical applications, educational contributions, conference participation, funded projects, patents where applicable, and other documented outcomes. The available information for this page does not independently verify such additional measures.

Award Suitability

Akinbo Bayo Johnson’s supplied profile presents a defined research subject in Plasticity, an academic affiliation at the Federal College of Education Abeokuta, and measurable citation indicators of 215 citations, an h-index of 9, and an i10-index of 9. [1] These characteristics provide relevant evidence for consideration under a Best Researcher Award category, particularly where scholarly productivity and citation impact form part of the evaluation framework.

The Global Mechanics Awards provides the stated event context for this recognition profile. Final award suitability should be determined according to the official award criteria, submission requirements, and independent evaluation procedures applicable to the relevant award cycle. [2]

Conclusion

Akinbo Bayo Johnson is presented in the supplied academic data as a researcher affiliated with the Federal College of Education Abeokuta, Nigeria, with Plasticity identified as the principal subject area. The reported Google Scholar metrics of 215 citations, an h-index of 9, and an i10-index of 9 provide a quantitative basis for documenting scholarly visibility. [1] In the context of the Global Mechanics Awards, these indicators may contribute to an assessment for the Best Researcher Award, subject to the official evaluation criteria and verification of the underlying research record. [2]

References

  1. Google Scholar. (n.d.). Akinbo Bayo Johnson — Google Scholar profile. Google Scholar profile identifier: JTHGT20AAAAJ.
  2. Global Mechanics Awards. (n.d.). Global Mechanics Awards — Official Website.

Amir Kavussi | Plasticity | Editorial Board Member

Prof. Amir Kavussi | Plasticity | Editorial Board Member

Head of Highway Group at Tarbiat Modares University | Iran

Prof. Amir Kavussi is a distinguished Professor of Civil Engineering whose scholarly work has significantly advanced the fields of pavement engineering, pavement management, pavement materials, asphalt technology, and bitumen science. His research contributions demonstrate a sustained commitment to improving the performance, durability, sustainability, and resilience of transportation infrastructure systems. His expertise spans diverse areas, as reflected in his extensive publication record, which includes influential works such as Fatigue Characterization of Asphalt Mixes Containing Electric Arc Furnace Steel Slag Subjected to Long Term Aging and Laboratory Fatigue Models for Recycled Mixes with Bitumen Emulsion and Cement, both of which established foundational insights into the behavior of recycled and modified asphalt mixes. He has also contributed to moisture and durability studies through impactful publications like Evaluation of the Effects of Anti-Stripping Agents on the Performance of Asphalt Mixtures, Moisture Susceptibility of Warm Mix Asphalt: A Statistical Analysis of Laboratory Testing Results, and Applying Surface Free Energy Method for Evaluation of Moisture Damage in Asphalt Mixtures Containing Date Seed Ash. His work investigating polymer and nanomaterial modifications, including Rheological Characteristics of SBR and NR Polymer Modified Bitumen Emulsions at Average Pavement Temperatures, The Role of Nanomaterials in Reducing Moisture Damage of Asphalt Mixes, and Investigating Fatigue Behavior of Nanoclay and Nano Hydrated Lime Modified Bitumen Using LAS Test, has been widely recognized for its innovation and technical rigor. Professor Kavussi has also made notable contributions to sustainable pavement technologies through publications such as The Use of High Content of Fine Crumb Rubber in Asphalt Mixes Using Dry Process, Characterizing Temperature Performance of Bio-Modified Binders Containing RAP Binder, Effects of Aging Level on Induced Heating-Healing Properties of Asphalt Mixes, and Performance Characterization of Warm-Mix Asphalt Containing High Reclaimed-Asphalt Pavement with Bio-Oil Rejuvenator. With additional influential works including Properties of Bituminous Mixtures Containing Different Fillers, A Model for Resilient Modulus Determination of Recycled Mixes with Bitumen Emulsion and Cement from ITS Testing Results, Evaluation of PFWD as Potential Quality Control Tool of Pavement Layers, and Evaluating Fatigue Behavior of Asphalt Binders and Mixes Containing Date Seed Ash, his research portfolio demonstrates breadth, depth, and lasting impact. Today, Amir Kavussi stands as a highly cited academic leader whose contributions continue to guide both research and practice in modern pavement engineering.

Profile:  Scopus | Google Scholar

Featured Publications:

Kavussi, A., & Qazizadeh, M. J. (2014). Fatigue characterization of asphalt mixes containing electric arc furnace (EAF) steel slag subjected to long term aging. Construction and Building Materials, 72, 158–166.

Kavussi, A., & Modarres, A. (2010). Laboratory fatigue models for recycled mixes with bitumen emulsion and cement. Construction and Building Materials, 24(10), 1920–1927.

Nazirizad, M., Kavussi, A., & Abdi, A. (2015). Evaluation of the effects of anti-stripping agents on the performance of asphalt mixtures. Construction and Building Materials, 84, 348–353.

Khadivar, A., & Kavussi, A. (2013). Rheological characteristics of SBR and NR polymer modified bitumen emulsions at average pavement temperatures. Construction and Building Materials, 47, 1099–1105.

Tahami, S. A., Mirhosseini, A. F., Dessouky, S., Mork, H., & Kavussi, A. (2019). The use of high content of fine crumb rubber in asphalt mixes using dry process. Construction and Building Materials, 222, 643–653.