Somnath Nandi | Data-informed Decision Making | Best Researcher Award

Mr. Somnath Nandi | Data-informed Decision Making | Best Researcher Award

Jadavpur University | India

Mr. Somnath Nandi is a PhD Research Scholar at the Additive Manufacturing Research Group (AMRG), CSIR-Central Mechanical Engineering Research Institute (CMERI), India, affiliated with the Academy of Scientific and Innovative Research (AcSIR). His research focuses on functionally graded material (FGM) development, mechanical and tribological characterization, and process optimization in Wire Arc Additive Manufacturing (WAAM). He has contributed to several funded projects, including the design of SS-Ni transition metals-based electrodes for green hydrogen generation, bimetallic structure development for Tata Steel, and remanufacturing of railway brake shoes. Mr. Nandi holds an M.E. in Production Management from Jadavpur University and a B.Tech in Mechanical Engineering from the Government College of Engineering and Textile Technology, Berhampore. His published works in reputed SCI-indexed journals such as Progress in Additive Manufacturing, Materials Letters, and Journal of Materials Engineering and Performance highlight his expertise in optimization, digital twins, and sustainable manufacturing. His research interests span metal additive manufacturing, tribology, hybrid manufacturing, and digital monitoring systems. A GATE-qualified engineer (2021, 2022), he is an active member of professional societies including IIM and IAENG. Mr. Nandi has authored 10+ scientific documents, achieving an h-index of 3 with over 45 citations, reflecting his growing impact in the field of advanced manufacturing.

Profiles : Orcid | Google Scholar

Featured Publications

Biswas, S., Nandi, S., Hussain, M. S., Mandal, A., & Mukherjee, M. (2025). “Influence of heat input on the interfacial characteristics of SS316L–In718 bi-metallic deposition for wire arc additive manufacturing.” Materials Letters.

Nandi, S., Biswas, S., & Mukherjee, M. (2025). “Optimization of Wire Arc Additive Manufacturing Parameters for Steel–Aluminum Bimetallic Interface: A Comparative Study of Metaheuristic and Machine Learning Approaches.” Journal of Materials Engineering and Performance, 35(6).

Ahammed, A. A. C. P., Nandi, S., Paul, A. R., Sreejith, B., MJ, J., & Mukherjee, M. (2025). “On the Characteristic Evaluation of Bimetallic Interface of Carbon Steel (EN31) and Aluminium (AA4043) for Wire Arc Additive Manufacturing.” Metals and Materials International, 1–18.

Pendokhare, D., Nandi, S., & Chakraborty, S. (2025). “A comparative analysis on parametric optimization of abrasive water jet machining processes using foraging behavior-based metaheuristic algorithms.” OPSEARCH, 1–42.

Hassan Abdollah-Pour | Materials Failure Analysis | Best Researcher Award

Assoc. Prof. Dr. Hassan Abdollah-Pour | Materials Failure Analysis | Best Researcher Award

Semnan University | Iran

Assoc Prof Dr. Hassan Abdollah-Pour is a distinguished scholar and Associate Professor at the Faculty of Materials and Metallurgical Engineering, Semnan University, Iran. With a prolific record of publications in high-impact journals, he has established himself as an expert in advanced materials engineering, surface coatings, corrosion resistance, and metallurgical innovations. Over the course of his academic and research career, he has contributed significantly to the development of novel materials, high-performance coatings, and innovative processing techniques, advancing both theoretical knowledge and industrial applications in materials science.

Professional Profile

GOOGLE SCHOLAR

Education

Dr. Abdollah-Pour has received extensive academic training in materials and metallurgical engineering from leading Iranian institutions. He earned his Ph.D. in Materials Engineering from the Iran University of Science and Technology (IUST), where his doctoral research focused on the thermal stability and mechanical properties of aluminum matrix composites reinforced with intermetallic compound particles. Prior to that, he completed his Master’s degree in Metallurgical Engineering at Amir Kabir University of Technology, concentrating on plasma nitriding of austenitic stainless steels, and his Bachelor’s degree in Materials Engineering from Sahand University of Technology, where he conducted research on the metallurgical applications of Iranian chromite ores.

Experience

As an Associate Professor, Dr. Abdollah-Pour has played an instrumental role in academic leadership, research mentorship, and industrial collaboration. His academic journey includes years of teaching and supervising research projects related to materials characterization, coating technologies, and metallurgical process optimization. He has contributed as a principal investigator and co-investigator in numerous projects involving advanced coatings, additive manufacturing, spark plasma sintering, laser cladding, and friction stir processing. He has extensive experience working with surface engineering, nano-structured materials, and tribological performance of advanced alloys, particularly in high-temperature and corrosive environments. His collaborations span across interdisciplinary fields including mechanical engineering, surface science, and nanotechnology.

Research Interests

Dr. Abdollah-Pour’s research interests are multifaceted and span across materials design, surface modification, and performance optimization of engineering alloys and composites. He focuses on the development and characterization of protective coatings such as MCrAlY and MAX phase coatings for turbine blades, exploration of plasma electrolytic oxidation (PEO) techniques for zirconium and magnesium-based alloys, and enhancement of corrosion, wear, and thermal resistance in critical components. His works on aluminum matrix composites, titanium carbide (TiC) reinforced materials, and Cr2AlC coatings have contributed to improving the lifespan and mechanical performance of industrial components. He is also actively involved in friction stir welding, laser cladding, powder metallurgy, and the synthesis of nano/ultrafine-grained materials with tailored microstructures.

Awards and Recognition

Throughout his academic career, Dr. Abdollah-Pour has received recognition for his outstanding research contributions and publications. His extensive work in materials engineering has been published in reputed journals including Journal of Materials Engineering and Performance, Surface and Coatings Technology, Oxidation of Metals, and Materials. He has been involved in several funded projects and has received institutional and collaborative research support for advancing material science innovations. His scholarly influence is evident through numerous citations and collaborations with international and national research teams, reflecting the practical impact of his studies in aerospace, energy, and biomedical industries.

Publications

Pour, H.A., Lieblich, M., Lopez, A.J., Rams, J., Salehi, M.T., Shabestari, S.G. (2007). “Assessment of tensile behaviour of an Al–Mg alloy composite reinforced with NiAl and oxidized NiAl powder particles helped by nanoindentation” in Composites Part A: Applied Science and Manufacturing.

Kazempour-Liasi, H., Tajally, M., Abdollah-Pour, H. (2019). “Effects of pre-and post-weld heat treatment cycles on the liquation and strain-age cracking of IN939 superalloy” in Engineering Research Express.

Bakhshinezhad, H., Honarbakhshraouf, A., Abdollah-Pour, H. (2019). “A study of effect of vanadium on microstructure and mechanical properties of as-cast and austempered ductile iron” in Physics of Metals and Metallography.

Alvand, M., Naseri, M., Borhani, E., Abdollah, P.H. (2018). “Microstructure and crystallographic texture characterization of friction stir welded thin AA2024 Aluminum alloy” in Iranian Journal of Materials Science and Engineering.

Nazarian-Samani, M., Abdollah-Pour, H., Mirzaee, O., Kamali, A.R., et al. (2013). “Effects of Ni addition on the microstructure and properties of nanostructured copper–germanium alloys” in Intermetallics.

Rezaeian-Delouei, M., Abdollah-Pour, H., Tajally, M., Mousavizade, S.M. (2020). “An investigation of microstructure, wear and corrosion resistance of AZ31B–SiO₂–graphite hybrid surface composite produced by friction stir processing” in Materials Research Express.

Conclusion

Assoc Prof Dr. Hassan Abdollah-Pour is a leading figure in the field of materials and metallurgical engineering, known for his pioneering work in protective coatings, composite materials, and advanced surface treatments. His research has not only contributed to the academic body of knowledge but has also provided practical solutions for industries demanding enhanced performance under extreme conditions. With his commitment to innovation, interdisciplinary collaboration, and academic excellence, he continues to shape the future of materials engineering, guiding young researchers and driving forward industrially relevant scientific advancements.

Bipasha Das | Laser Surface Engineering | Best Researcher Award

Ms. Bipasha Das | Laser Surface Engineering | Best Researcher Award

Indian Institute of Technology Kharagpur | India

Bipasha Das is a dedicated researcher in the field of nanoscience and technology, specializing in surface engineering of titanium alloys for biomedical applications. Her academic journey and research pursuits reflect a strong commitment to advancing the performance of bio-implant materials through innovative laser-based surface modification techniques. With a robust foundation in chemical engineering and environmental engineering, she bridges the gap between materials science and biomedical engineering. Bipasha’s work combines deep theoretical knowledge with extensive experimental expertise, contributing significantly to the improvement of tribological, corrosion, and biocompatibility properties of titanium-based alloys. She has shared her research at prestigious international conferences and published in high-impact journals, gaining recognition for her scientific contributions.

Professional Profile

SCOPUS

GOOGLE SCHOLAR

Education

Bipasha holds a Ph.D. in Nanoscience and Technology from the Indian Institute of Technology Kharagpur, where her thesis focuses on the “Surface Engineering of Titanium Alloys for Biomedical Applications.” Her doctoral research involves diverse laser processing techniques, including laser surface melting, composite surfacing, shock peening, and hybrid laser processing of Ti6Al4V alloy. She also earned a Master’s degree in Chemical Engineering with a specialization in Environmental Engineering from the University of Calcutta, where she conducted research on photocatalytic degradation of nanocomposite films. Her academic foundation was laid with a Bachelor’s degree in Chemical Engineering from Maulana Abul Kalam Azad University of Technology, West Bengal. This multidisciplinary education has equipped her with strong technical knowledge, analytical skills, and the ability to address challenges at the intersection of materials science, environmental sustainability, and biomedical engineering.

Experience

Throughout her academic and research career, Bipasha has engaged in extensive laboratory work, mastering advanced characterization and testing methods for engineering materials. Her expertise spans metallographic sample preparation, optical microscopy, surface profilometry, X-ray diffraction, X-ray photoelectron spectroscopy, scanning electron microscopy, microhardness testing, nanoindentation, electrochemical evaluation, wear testing, and tribocorrosion studies. She has also acquired proficiency in various software tools, data analysis methods, and programming languages, enabling her to interpret experimental results with precision. Her professional experience includes industrial training at reputed companies, where she developed practical knowledge of chemical process operations. Additionally, she has contributed as a speaker at multiple national and international conferences, showcasing her findings to a global scientific community.

Research Interest

Bipasha’s primary research interest lies in enhancing the functional performance of titanium-based alloys for biomedical applications through advanced surface engineering. She focuses on laser-assisted techniques to improve wear resistance, corrosion protection, and biocompatibility of Ti6Al4V alloy implants. Her studies investigate the kinetics and mechanisms of tribo-corrosion, the development of in situ carbide-reinforced titanium matrix composites, and the optimization of surface treatments for long-term implant stability. She is also keenly interested in hybrid laser processing methods that combine mechanical, chemical, and thermal effects to create superior surface properties. Beyond biomedical applications, her background in environmental engineering provides her with an interdisciplinary approach, enabling her to explore sustainable and eco-efficient materials processing.

Awards

Bipasha’s research excellence has been recognized through various academic and professional achievements. She received the Journal of Bio and Tribo-Corrosion (JBTC) award for the best presentation and scientific contribution at the 6th International Conference on Tribo-Corrosion. Her selection as a speaker at numerous international symposia and conferences, including events in the United Kingdom and collaborative Indo-Austrian programs, further demonstrates her prominence in the scientific community. She has also been a recipient of government scholarships in recognition of her academic merit, which has supported her advanced studies and research pursuits.

Publications

Mechanically tailored surface of titanium-based alloy (Ti6Al4V) by laser surface treatment

Authors: Das, B., Srivastava, S. K., Manna, I., & Majumdar, J. D.

Journal: Surface and Coatings Technology

Year: 2024

Studies on Kinetics and Mechanism of Tribo-corrosion of in situ Laser Composite Surfaced Ti6Al4V using diode laser

Authors: Das, B., Srivastava, S. K., Manna, I., & Majumdar, J. D.

Journal: Tribology International

Year: 2025

Conclusion

Bipasha Das exemplifies the qualities of a forward-thinking researcher dedicated to innovation in biomedical materials engineering. Her work in laser-based surface engineering has the potential to significantly impact the design and durability of next-generation bio-implants, offering improved performance and patient outcomes. With her strong academic foundation, cross-disciplinary expertise, and growing international presence, she stands as a promising contributor to both scientific advancement and practical applications in healthcare materials. Her future endeavors are poised to build on her current successes, further bridging the gap between advanced materials processing and biomedical innovation.

Ahmed Degnah – Metallurgical Engineering – Best Researcher Award 

Dr. Ahmed Degnah - Metallurgical Engineering - Best Researcher Award 

King Abdulaziz City for Science & Technology - Saudi Arabia

Author Profile

Early Academic Pursuits

Dr. Ahmed Abdulaziz Degnah began his academic journey with a Bachelor's degree in Mechanical Engineering from Umm Al-Qura University (KSA) in 2010. During his undergraduate studies, he demonstrated exceptional skills and dedication, evidenced by his GPA of 3.32/4.0 with Second Honor. His graduation project on Torsional Vibration & Fault Diagnosis showcased his early interest in engineering research and problem-solving.

Building on his undergraduate success, Ahmed pursued a Master's degree in Materials Science & Engineering from Rutgers University New Brunswick (USA), graduating in 2015 with a commendable GPA of 3.323/4.0. His master's thesis, focusing on the Effect of Solvent on Melting Gel Behavior, delved into the intricate properties of materials, laying the groundwork for his future research endeavors.

His academic pursuits culminated in a Doctorate of Philosophy in Metallurgical Engineering from The University of Utah (USA) in 2019. With an outstanding GPA of 3.96/4.0, Ahmed showcased his dedication to academic excellence. His Ph.D. dissertation, titled "Design, Synthesis, and Properties of Titanium Metal Matrix Composites Based on Ti-B-Fe System," underscored his expertise in metallurgical engineering and materials science.

Professional Endeavors

Dr. Ahmed's professional journey reflects a commitment to research and academic excellence. He commenced his career as a Research Assistant at the National Center for Aeronautical Technology, KACST, from January 2011 to August 2013. This role provided him with invaluable experience in conducting research and contributing to cutting-edge projects in the field of aeronautical technology.

His academic prowess led him to serve as a Teaching Assistant at The University of Utah from August to December 2019, where he imparted knowledge in Mechanical Metallurgy. Additionally, he assumed the role of Assistant Professor at KACST, first in the National Center for Aeronautical Technology from February 2020 to April 2022, and currently in the National Center for Advanced Materials Technologies since April 2022. As an Assistant Professor, Ahmed plays a pivotal role in shaping the minds of future engineers and researchers while actively contributing to groundbreaking research projects.

Contributions and Research Focus

Dr. Ahmed's research contributions are significant and far-reaching. His publications span various prestigious journals and conferences, demonstrating the breadth and depth of his expertise. His research interests encompass diverse areas such as additive manufacturing, alloy design, materials characterization, and composite materials.

He has made notable contributions to understanding the micro-scale deformation behavior of additively manufactured alloys, investigating the role of precipitation and solute segregation on material properties, and exploring novel powder metallurgy processing techniques for titanium alloys. Moreover, his research on high-entropy alloys, polymer matrix composites, and advanced materials for high-temperature applications showcases his versatility and innovation in materials science and engineering.

Accolades and Recognition

Throughout his career, Ahmed has garnered recognition for his outstanding contributions. He has received numerous appreciation certificates, underscoring his excellence in academia and research. His dedication to teaching and mentoring is evident through the workshops and short courses he has taught, aimed at enriching the knowledge and skills of aspiring engineers and researchers.

Impact and Influence

Dr. Ahmed's work has had a profound impact on the field of materials science and engineering. His research findings have contributed to advancing the understanding of material properties and processing techniques, paving the way for innovations in various industries including aerospace, automotive, and biomedical.

Legacy and Future Contributions

As Ahmed continues to pursue excellence in academia and research, his legacy is one of innovation, mentorship, and academic leadership. With a focus on interdisciplinary collaboration and pushing the boundaries of materials science, he is poised to make significant contributions to solving complex engineering challenges and shaping the future of advanced materials technologies. Through his dedication to education, research, and professional development, Ahmed Abdulaziz Degnah is an inspiring figure whose contributions will continue to resonate within the scientific community for years to come.

 

 

International Research Data Analysis Excellence Awards | Award Winners 2023

Congratulations, Chenhao xue | Best Researcher Award Winner! 🏅🏆

Chenhao xue : 3D printing🧑‍🎓

We are excited to announce that Chenhao Xue has secured the prestigious Best Researcher Award in 3D Printing at the International Research Data Analysis Excellence Awards! This remarkable achievement underscores Chenhao's unparalleled dedication and groundbreaking contributions to the field of 3D printing. Heartfelt congratulations to Chenhao Xue for this well-earned accolade, showcasing their commitment to advancing research and innovation in the realm of 3D printing.

Professional Profiles

Early Academic Pursuits

Chenhao Xue pursued his master's education at the School of Mechanical Engineering, Xinjiang University, starting in September 2021. His academic focus revolved around laser additive manufacturing, flexible material additive manufacturing, mechanical metamaterials, and personalized lightweight structure design. Theoretical calculations and simulations of polymer mechanics constituted a significant aspect of his research endeavors.

Professional Endeavors

Chenhao Xue's professional journey is marked by diverse experiences in key research and development projects. He actively contributed to China's National Key Research and Development Plan, specifically in the realm of key technologies for carbon fiber composite high-performance equipment for winter projects. His involvement in the China Guangdong Province key research and development plan showcased his expertise in the personalized design and manufacturing technology of low wind resistance and high reliability carbon fiber snowmobile accessories.

Additionally, his role as a Special Commissioner for the Science and Technology Bureau of Dongguan City, Guangdong Province, involved research on digital design and intelligent manufacturing of complex orthopedic rehabilitation AIDS based on 3D printing. Chenhao Xue also played a crucial role in the Major Science and Technology Project of Dongguan City, focusing on high-speed light curing printing and the industrialization of high-performance grid structure two-component elastomers.

Contributions and Research Focus

Chenhao Xue's research contributions are evident in his publications and projects. His work on 3D printing of flexible mechanical metamaterials, as published in "Polymers," highlights the synergistic design of process and geometric parameters. Moreover, his involvement in the personalized lightweight sports helmet 3D printing manufacturing technology and the patent for a curved lattice unit and its structure underscore his commitment to innovation in additive manufacturing and lightweight design.

Accolades and Recognition

Chenhao Xue's research has garnered recognition through publications and patents. His contributions to the field of personalized lightweight sports helmets and the development of innovative structures have been acknowledged in academic journals and patent grants.

Impact and Influence

Chenhao Xue's work in laser additive manufacturing, 3D printing, and personalized design technologies showcases his impact on advancing manufacturing techniques and materials. His involvement in key research and development plans at both national and provincial levels demonstrates his influence in shaping technological advancements in winter equipment and lightweight structures.

Legacy and Future Contributions

Chenhao Xue's legacy lies in his multifaceted contributions to additive manufacturing, materials science, and personalized design. As he continues his academic and professional journey, his future contributions are poised to further enhance the understanding and application of advanced manufacturing technologies, leaving a lasting impact on the fields of laser additive manufacturing and flexible material design.

Notable Publications:

Spatiotemporal Characteristics and Factors Influencing Urban Tourism Market Network in Western China: Taking Chengdu as an Example