Naresh Kumar | Mechanical Engineering | Best Researcher Award

Mr. Naresh Kumar | Mechanical Engineering | Best Researcher Award

Mr. Naresh Kumar, Amity University Rajasthan, Jaipur, India

Profile:

🎓 Current Position

Naresh Kumar currently serves as a PhD (Engineering) Research Scholar at the Department of Mechanical Engineering, Amity University Rajasthan, Jaipur, India. In addition to his research, he is an Assistant Professor in the Mechanical Engineering Department at Guru Nanak Institute of Technology, Nagpur, Maharashtra. With 13 years of teaching experience for undergraduate and postgraduate engineering students, Naresh has established himself as a dedicated educator and researcher. He also holds the significant responsibility of being the Indian Institute of Remote Sensing (IIRS) – ISRO Distance Learning College Coordinator.

📚 Publication Achievements

Naresh Kumar has contributed to advancing mechanical engineering through his publications. His work focuses on thermal engineering, friction stir welding, and design innovations. He is an active member of several editorial and review committees, including the Editorial Board of IPRJB Journals (USA), IFERP (Chennai, Tamil Nadu), and TIJER, where he aids in maintaining the quality of academic literature.

🔬 Ongoing Research

Naresh Kumar’s doctoral research revolves around the “Design and Development of Friction Stir Welding Joints of Aluminium and Copper Alloys by Using Industrial Wastes and Ceramic Materials”. This work emphasizes sustainable engineering by leveraging industrial waste and innovative materials to enhance the performance of welding joints. The study addresses the growing need for eco-friendly solutions in manufacturing and is poised to make significant contributions to the field of thermal engineering.

🔍 Research Interests

  • Thermal Engineering: Exploring energy-efficient solutions and heat transfer processes.
  • Friction Stir Welding: Advancing this solid-state joining technique for heterogeneous materials.
  • Design Innovations: Enhancing the strength, reliability, and sustainability of engineering components. His commitment to these fields ensures his continuous contribution to both academic and industrial advancements.

🎓 Academic Background

  • B.E. in Mechanical Engineering with an impressive 75.35% (Honours).
  • M.Tech in Manufacturing Technology and Automation with 70.07%.
  • Currently pursuing a PhD in Engineering, focusing on friction stir welding technologies. This blend of education and expertise underpins his impactful teaching and research endeavors.

🏆 Scholarships and Awards

While specific scholarships and awards are not listed, Naresh Kumar’s consistent academic performance and professional memberships reflect his recognized abilities in the field of engineering.

🧬 Bioinformatics and Computational Skills

Naresh Kumar integrates modern computational tools to enhance his research outcomes. While his primary focus is mechanical engineering, his expertise in simulation and modeling techniques ensures precise and data-driven results in his studies.

🤝 Professional Associations

  • Editorial Board Member, IPRJB Journals (USA).
  • Review Committee Member, IFERP (Chennai, Tamil Nadu).
  • Review Committee Member, TIJER (ID: 111927). These memberships not only highlight his academic excellence but also his dedication to the dissemination of knowledge.

🛠️ Training & Workshops

As an educator and researcher, Naresh Kumar has participated in various training sessions and workshops to stay updated with advancements in mechanical engineering. His role as an IIRS-ISRO Distance Learning Coordinator further exemplifies his commitment to facilitating knowledge exchange.

🎤 Oral Presentations

Naresh Kumar has delivered insightful presentations at academic and professional forums, showcasing his research on friction stir welding, thermal engineering, and sustainable manufacturing technologies.

✅ Tasks Completed as a Researcher

  • Successfully designing and developing friction stir welding joints using innovative materials.
  • Mentoring students and fostering a research-oriented culture in academia.
  • Collaborating with esteemed organizations to push the boundaries of mechanical engineering.

🚀 Success Factors

  • Dedication to sustainable solutions: His work prioritizes environmental and industrial needs.
  • Strong academic foundation: Excellence in both education and teaching.
  • Collaborative mindset: Engaging with peers and institutions for impactful research.

🔬Laboratory Experience

Naresh Kumar’s work is rooted in hands-on laboratory experiments and real-world applications. His expertise in materials and thermal studies is well-documented in his research outputs. His contributions in journals and conferences highlight his ability to bridge theoretical concepts with practical engineering solutions.

📖Publications:

Paper Title: Analysis of reinforced friction stir welded joints of dissimilar Al and Cu-alloys by ANSYS software

  • Authors: Naresh Kumar, Rishi Dewangan, Kasi Raja Rao
  • Journal: Welding International
  • Year: 2025

Paper Title: Experimental optimization of the FSW parameters to weld the dissimilar Al- and Cu-alloys by using additives at their joints

  • Authors: Naresh Kumar, Rishi Dewangan, Kasi Raja Rao
  • Journal: Welding International
  • Year: 2024

Paper Title: The Experimental Investigation on various additives used in Friction Stir Welded Joints of Aluminium and Copper Alloys

  • Authors: Dr. Naresh Kumar
  • Journal: Harbin Engineering Journal
  • Year: 2024

Paper Title: Design and Heat Transfer Analysis of Reinforced Friction Stir Welded Joints using ANSYS Software

  • Authors: Dr. Naresh Kumar
  • Journal: International Conference on Recent Advances in Design and Manufacturing (RADM – 2024)
  • Year: 2024

Paper Title: Experimental optimization of the FSW parameters to weld the dissimilar Materials by using additives at their joints

  • Authors: Dr. Naresh Kumar
  • Journal: International Conference on Recent Advances in Design and Manufacturing (RADM – 2024)
  • Year: 2024

🌟 Conclusion

Naresh Kumar stands out as a passionate educator, researcher, and innovator. His dedication to advancing sustainable engineering practices, combined with his professional affiliations and teaching experience, underscores his pivotal role in shaping the future of mechanical engineering.

 

Jufeng Deng | Nano-Electromechanical System | Best Researcher Award

Prof. Jufeng Deng | Nano-Electromechanical System | Best Researcher Award

Professor at Guizhou University, China

Profile:

🏢 Current Position

Dr. Jufeng Deng currently holds a prestigious position at the Key Laboratory of Advanced Manufacturing Technology of the Ministry of Education, located at Guizhou University, GuiYang, China. Since 2023, he has been an integral member of this renowned institution, where he works to advance the fields of mechatronics and manufacturing technology. His role enables him to mentor budding researchers, collaborate with leading academics, and spearhead cutting-edge research projects in advanced manufacturing.

📚 Publication Achievements

As a prolific author, Dr. Deng has contributed extensively to the scientific community with research articles published in leading journals. His work is frequently cited, reflecting the profound impact of his findings on topics such as microsystems, nanoengineering, and mechatronics. His editorial role as Young Associate Editor for Microsystems & Nanoengineering since 2024 underscores his prominence and leadership in the field.

🔬 Ongoing Research

Dr. Deng’s ongoing research focuses on microsystems and nanoengineering, emphasizing the integration of mechatronic principles into practical applications. Advanced manufacturing techniques for microscale systems. Nanoengineering innovations for energy-efficient systems. Collaborative robotics for high-precision tasks. His research integrates bioinformatics principles to design intelligent, adaptive systems for industrial and biomedical applications.

🌟Research Interests

Mechatronic Engineering Combining mechanical, electronic, and computer systems for innovative solutions. Advanced Manufacturing Enhancing efficiency and precision through novel processes. Nanotechnology Applications Bridging micro and nanoscale technologies for practical use. Bioinformatics Integration Leveraging data analytics to optimize system designs.

🎓 Academic Background

Dr. Deng earned his Ph.D. in Mechatronic Engineering from the prestigious Dalian University of Technology in Dalian, China, in 2022. This rigorous program honed his expertise in integrating engineering principles across mechanical and electronic domains. His global academic exposure includes a tenure at the University of California, Irvine (UCI), USA, from 2017 to 2019, where he enriched his knowledge of aerospace and mechanical engineering.

🏅 Scholarships and Awards

Dr. Deng has been the recipient of several scholarships and awards, recognizing his academic excellence and contributions to research. These accolades highlight his commitment to pushing the boundaries of knowledge in his field.

🤝 Professional Associations

Dr. Deng actively engages with professional organizations to foster collaboration and share insights. His association with the Key Laboratory of Advanced Manufacturing Technology and international editorial roles has positioned him as a thought leader in the global research community.

🛠️ Training & Workshops

To stay ahead in his field, Dr. Deng participates in high-level workshops and training sessions. These include advanced courses on nanoengineering techniques, bioinformatics methodologies, and collaborative research strategies, further enhancing his technical prowess.

🎤 Oral Presentations

Dr. Deng is a seasoned presenter, delivering impactful talks at international conferences and symposiums. His ability to communicate complex ideas with clarity and precision has earned him accolades and invitations to speak at prestigious events.

Tasks Completed as a Researcher

Developing innovative prototypes for microsystems. Publishing breakthrough studies in high-impact journals. Mentoring graduate students in advanced research techniques. Establishing interdisciplinary collaborations for large-scale projects.

🚀 Success Factors

Key to Dr. Deng’s success is his dedication to innovation, collaboration, and continuous learning. His adaptability and ability to integrate diverse fields such as mechatronics, nanoengineering, and bioinformatics have set him apart as a visionary leader.

🧪 Laboratory Experience

Dr. Deng’s laboratory expertise spans designing experiments for microsystems, performing simulations, and validating prototypes. His publications serve as foundational texts for peers and students alike, bridging theoretical knowledge and practical applications.

📖Publications:

Paper Title: Fabrication of a three-dimensional micro/nanocarbon structure with sub-10 nm carbon fiber arrays based on the nanoforming and pyrolysis of polyacrylonitrile-based jet fibers

  • Authors: Deng, J., Liu, C., Song, D., Madou, M.
  • Journal: Microsystems and Nanoengineering
  • Year: 2023

Paper Title: Highly Sensitive Inertial Micro-Switch for Achieving Adjustable Multi-Threshold Acceleration

  • Authors: Deng, J., Song, D., Su, S.
  • Journal: Actuators
  • Year: 2023

Paper Title: Fabrication of crystalline submicro-to-nano carbon wire for achieving high current density and ultrastable current

  • Authors: Deng, J., Liu, C., Song, D., Madou, M.
  • Journal: Microsystems and Nanoengineering
  • Year: 2022

Paper Title: Unraveling the electron transfer rates of highly crystalline carbon nanowires with surface oxides

  • Authors: Deng, J., Liu, C., Madou, M.
  • Journal: Nanoscale
  • Year: 2021

Paper Title: Fabrication of patterned graphitized carbon wires using low voltage near-field electrospinning, pyrolysis, electrodeposition, and chemical vapor deposition

  • Authors: George, D., Garcia, A., Pham, Q., Ragan, R., Madou, M.
  • Journal: Microsystems and Nanoengineering
  • Year: 2020

 

 

Muhammad Ahsan Saleem | Additive Manufacturing | Best Researcher Award

Mr. Muhammad Ahsan Saleem | Additive Manufacturing | Best Researcher Award

Nanjing University of Science and Technology, China

Profile:

Current Position🎓

Muhammad Ahsan SALEEM is currently pursuing his Doctor of Engineering in Mechanical Engineering at Nanjing University of Science and Technology (NUST) in Nanjing, China, since September 2020. As a researcher, he is deeply involved in interdisciplinary projects that combine mechanical engineering, data science, and 3D printing technology. His current focus is on optimization of inkjet printing processes, particularly targeting low edge roughness and dimensional precision for multi-material applications.

Research Focus 🧑‍🔬

SALEEM works on experimental design to explore the jetting behavior of high-viscosity inks during inkjet-based 3D printing and applies machine learning and data acquisition techniques to drive innovation in the lab. His expertise lies in integrating data-driven approaches to advance the development of functional 3D-printed components such as electrical resistors made from a composite of conductive and insulating materials. These efforts aim to improve the precision and quality of printed parts for various industrial applications.

Publication Achievements 📝

While still in the early stages of his doctoral research, Muhammad Ahsan SALEEM has contributed to several technical reports and research projects at NUST. His work, which integrates machine learning and 3D printing technology, is poised for publication in prominent journals related to mechanical engineering and manufacturing. SALEEM is enthusiastic about publishing his findings in peer-reviewed platforms that will help establish his contributions to mechanical and mechatronics engineering.

Ongoing Research 🔬

Ahsan’s ongoing research centers on multi-material 3D printing, with a special focus on the development of inkjet-based 3D printing processes for industrial applications. His experimental research explores the jetting behavior of high-viscosity inks, which is essential for the precise fabrication of parts requiring specific resistivity characteristics. He is also investigating ways to incorporate machine learning into the research process to predict and enhance the quality and efficiency of printed materials.

Research Interests 🔍

SALEEM’s primary research interests lie in mechatronics engineering, with a specific focus on 3D printing and automation. His work explores the intersection of mechanical engineering, robotics, and data science, particularly in the development of advanced manufacturing techniques. His research also covers areas such as electromechanical systems, sensor technology, and data acquisition methods used in precision engineering processes.

Academic Background 🎓

SALEEM’s academic journey is marked by a solid foundation in engineering. He holds a Bachelor of Science in Mechatronics Engineering from the University of Engineering and Technology, Taxila, Pakistan (2013), and a Master of Engineering in Mechanical Engineering from Nanjing University of Science and Technology, China (2018). His diverse educational experiences have equipped him with a deep understanding of both theoretical and practical aspects of mechatronics and mechanical engineering. His advanced studies in Doctor of Engineering are pushing the boundaries of 3D printing and advanced manufacturing technologies.

Scholarships and Awards 🏆

Throughout his academic career, SALEEM has earned recognition for his academic excellence. He was awarded various scholarships and honors during his Master’s degree and Doctoral research, further solidifying his commitment to research and development in engineering. These awards not only acknowledge his technical prowess but also highlight his potential for significant contributions to the field of mechatronics and mechanical engineering.

Bioinformatics 🧬

While bioinformatics is not his core research area, SALEEM’s interdisciplinary approach to engineering involves elements of data analysis and algorithm development, skills that are integral to bioinformatics as well. His research on machine learning and data acquisition for engineering applications shares similarities with bioinformatics research, especially in terms of data-driven optimization and precision.

Professional Associations 👥

Muhammad Ahsan SALEEM is a member of several professional associations related to mechanical engineering and mechatronics. These associations help him stay updated on the latest trends, research, and technological advancements in the field. His membership also provides opportunities to engage with fellow professionals, share knowledge, and collaborate on cutting-edge research projects.

Training & Workshops 🎓

In addition to his formal education, SALEEM has participated in numerous workshops and training sessions focused on advanced manufacturing, automation, and machine learning. These workshops have equipped him with essential skills in 3D printing technologies and data-driven engineering, which he applies in his current research.

Oral Presentations and Conference Participation 🎤

Ahsan actively participates in engineering conferences and workshops, where he presents his research findings and engages with other researchers in the field. His ability to communicate complex ideas clearly and effectively has allowed him to gain visibility in the academic community, particularly in areas related to 3D printing and mechatronics engineering.

Tasks Completed as a Researcher 🔧

As part of his doctoral research, SALEEM has successfully contributed to the development and optimization of inkjet printing processes for advanced manufacturing applications. His work includes designing experiments to study high-viscosity inks and collaborating with his research team to integrate machine learning techniques for real-time data acquisition and analysis. He has also worked on experimental setups for multi-material 3D printing, exploring the use of conductive and insulating composites in the production of electrical resistors.

Success Factors 🌟

SALEEM’s success as a researcher can be attributed to his collaborative mindset, technical expertise, and innovative approach to solving complex engineering challenges. His ability to work well within a team, his commitment to data-driven methodologies, and his focus on continuous improvement have positioned him as a rising star in mechatronics engineering and 3D printing technology.

Laboratory Experience 🔬📚

Although still in the process of publishing his research, SALEEM has accumulated significant experience working in various research labs at Nanjing University of Science and Technology. He has contributed to the development of experimental setups, data acquisition systems, and machine learning models, which are integral to his research on inkjet printing and multi-material manufacturing.

📖Publications:

Paper Title: Influence of Silicon Carbide on Direct Powder Bed Selective Laser Process (Sintering/Melting) of Alumina

  • Authors: Rehman, A.U. Saleem, M.A. Liu, T. Pitir, F. Salamci, M.U.
  • Journal: Materials
  • Year: 2022

Paper Title: Quantized Event-triggered feedback control under fuzzy system with time-varying delay and Actuator fault

  • Authors: Aslam, M.S. Qaisar, I. Saleem, M.A.
  • Journal: Nonlinear Analysis: Hybrid Systems
  • Year: 2020

 

Paul Bere | Fiber Reinforcement in Composites | FRP Industry Collaboration Award

Prof Dr. Paul Bere | Fiber Reinforcement in Composites | FRP Industry Collaboration Award

Professor at Technical University of Cluj-Napoca, Romania

Profiles:

Current Position🏢

Professor Paul Petru Bere currently serves as a Professor at the Technical University of Cluj-Napoca, within the Faculty of Industrial Engineering, Robotics, and Production Management, specifically in the Manufacturing Engineering Department. He holds a significant position in the academic community, contributing his expertise and experience in manufacturing and polymeric composite materials. His extensive background in teaching, combined with his cutting-edge research, enables him to impact both the academic and industrial sectors. He has been a part of the university since 2018, after a successful tenure as an Associate Professor from 2018 to 2023.

Educational and Professional Background 📚

Professor Bere earned his Doctor of Engineering degree from the Technical University of Cluj-Napoca in 2009, specializing in manufacturing and mechanical behavior of polymeric composite tubes. This research was pivotal in understanding the potential applications and mechanical characteristics of composite materials, specifically in manufacturing processes. Furthermore, he obtained his Master’s degree in Modern Technology of Manufacturing Composite and Plastic Parts from the same institution, where he focused on rapid prototyping technologies and plastic and MC parts manufacturing. This foundation in both engineering and research laid the groundwork for his subsequent academic and professional achievements.

Research Interests and Ongoing Projects 🧠

Professor Bere’s research is primarily focused on advanced manufacturing technologies, composite materials, and polymeric materials used in sustainable development and automotive manufacturing. His ongoing research aims to optimize fiber-reinforced polymer composites for the electric vehicle industry, enhancing the performance and sustainability of components for electric vehicle bodies. He is actively involved in the EU-funded BRIDGE GRANT project titled “Optimization of Fiber-Reinforced Polymer Composite Materials and Manufacturing Technology Used in the Construction of Body Elements for Electric Vehicles”. This project, which holds a grant value of €100,000, investigates innovative manufacturing methods to make electric vehicles more efficient and environmentally friendly.

Moreover, his international research collaboration focuses on “Design and Modeling of Complex Surfaces Made of Composite Materials Using Catia V5 R20 Software”, highlighting his global contribution to the development of advanced manufacturing processes and materials.

Publication Achievements and Research Output 📄

Professor Bere has authored over 20 academic papers published in peer-reviewed journals and presented at various international conferences. His work has been extensively cited in fields related to composite materials, manufacturing technologies, and automotive industries. These contributions have earned him recognition as a key scholar in the manufacturing engineering field, influencing both academic circles and industrial practices. His research in composite material behavior and advanced production technologies is widely regarded as impactful in improving sustainability and performance in multiple industries, including automotive and aerospace engineering.

Awards and Recognition 🏆

Throughout his career, Professor Bere has been the recipient of several prestigious awards, including the BRIDGE GRANT, which allowed him to lead the research project on electric vehicle body optimization. His leadership in securing funding for significant research projects exemplifies his prowess in navigating and securing governmental and international funding for crucial scientific research. His successful management of the PN-III-CERC-CO-BG-2016 project demonstrates his ability to lead high-value research initiatives. This grant focuses on fiber-reinforced polymer composite materials, making significant strides in sustainable materials research.

Professional Associations and Collaborations 🌍

Professor Bere is an active member of several professional associations related to manufacturing engineering, composite materials, and sustainable manufacturing. His leadership in international collaborations strengthens his role as a bridge between Romanian academia and global research networks. His role as the project manager for international research agreements further highlights his capacity for collaboration and knowledge sharing in the scientific community.

Training, Workshops, and Oral Presentations 🗣️

With 28 years of teaching experience, Professor Bere has also contributed extensively to training the next generation of engineers. He has delivered numerous workshops on composite materials, advanced manufacturing technologies, and sustainable development. These workshops are vital in equipping students and professionals with practical skills that align with cutting-edge industrial applications. His extensive background in CAD mold design and prototyping techniques ensures that he is highly qualified to train others in these important areas.

He has also presented at many international conferences, where his oral presentations on manufacturing technologies and sustainable material applications have garnered attention. His ability to communicate complex research to diverse audiences has been one of his key strengths.

Laboratory Experience and Research Success 🔬

Throughout his career, Professor Bere has developed and conducted numerous experimental studies in the field of polymeric composite materials. His laboratory research focuses on understanding the manufacturing processes and mechanical behaviors of composite materials, crucial for industries such as automotive and aerospace. He has successfully led multiple experimental projects, and his work continues to shape the future of smart manufacturing and sustainable material use.

A Well-Rounded Leader in Manufacturing Engineering 🌟

Professor Paul Petru Bere stands out as an exceptional scholar and researcher. His strong academic credentials, extensive research, and successful project management make him a strong candidate for recognition. His ongoing work in optimizing composite materials and developing sustainable manufacturing technologies is paving the way for innovations in electric vehicles and other industries. With his dedication to both teaching and research, his significant contributions to the manufacturing engineering field are invaluable. His work is essential not only for the academic community but also for industry advancements, making him a true leader in his field.

📖Publications:

Paper Title: Design and Manufacture of Bent and Variable Section Tubes Made of FRP Composite

  • Authors: Bere, P., Dudescu, C., Parparit, M., Vilau, C.
  • Journal: MM Science Journal
  • Year: 2024

Paper Title: Understanding the Effect of Drilling Parameters on Hole Quality of Fiber-Reinforced Polymer Structures

  • Authors: Biruk-Urban, K., Bere, P., Udroiu, R., Józwik, J., Beer-Lech, K.
  • Journal: Polymers
  • Year: 2024

Paper Title: Study of the Torsional Phenomena in the Wing Structure of a Quadplane Type UAS

  • Authors: Parparita, M., Bere, P., Jozwik, J.
  • Journal: IEEE International Workshop on Metrology for Aerospace, MetroAeroSpace 2024
  • Year: 2024

Paper Title: Evaluation of the Tribological Properties of Different Fiber Reinforced Polymers

  • Authors: Cioaza, M., Birleanu, C., Pustan, M., Bere, P., Contiu, G.
  • Journal: Mechanisms and Machine Science
  • Year: 2024

Paper Title: Tribological Investigation of Glass Fiber Reinforced Polymer Composites against 52100 Chrome Alloy Steel Based on ELECTRE Decision-Making Method

  • Authors: Birleanu, C., Cioaza, M., Serdean, F., Bere, P., Contiu, G.
  • Journal: Polymers
  • Year: 2024