Anupam Agrawal | Mechanical Engineering | Best Researcher Award

Prof. Anupam Agrawal | Mechanical Engineering | Best Researcher Award

Indian Institute of Technology Ropar-india

Author Profile

Early Academic Pursuits 🎓

Dr. Anupam Agrawal’s journey in the realm of Mechanical Engineering began with his foundational education in India. He earned his Bachelor of Engineering (B.E.) in Mechanical Engineering from M.M.M. Engineering College, Gorakhpur, U.P., in 2000. Following this, Dr. Agrawal pursued a Master of Technology (M.Tech.) in Mechanical Engineering with a specialization in Manufacturing Systems Engineering from the Indian Institute of Technology (IIT) Kharagpur, graduating in 2002. His pursuit of knowledge and excellence led him to the Indian Institute of Technology (IIT) Kanpur, where he completed his Ph.D. in Mechanical Engineering in 2008. During his doctoral research, he focused on innovative manufacturing processes, laying the groundwork for his future contributions to the field.

Professional Endeavors 🌟

Dr. Agrawal’s professional career has been marked by a series of significant roles and achievements. He is currently a Professor in the Department of Mechanical Engineering at IIT Ropar, where he has been a pivotal figure since August 2024. Prior to this, he served as an Associate Professor at IIT Ropar from December 2015 to August 2024 and as an Assistant Professor from December 2010 to December 2015. His academic journey also includes a role as a Visiting Faculty at IIT Ropar and postdoctoral research at the International Center for Automotive Research (ICAR), Clemson University, USA, focusing on hybrid manufacturing processes.In addition to his academic roles, Dr. Agrawal has contributed significantly through his work as a Visiting Scholar at Northwestern University, USA, where he analyzed and experimented with Single Point Incremental Metal Forming Processes. His international experience and research have enriched his perspective and expertise in the field.

Contributions and Research Focus 🔬

Dr. Agrawal’s research interests are diverse and impactful. His areas of expertise include Sheet Metal Forming, Dieless Forming, Incremental Sheet Forming, Deformation Machining, Micro-Electric Discharge Machining, Laser Machining, and Additive Manufacturing. His work in these areas aims to push the boundaries of manufacturing technology and improve the precision and efficiency of various processes.One of his notable projects involves the study of new forming techniques at both macro and micro scales, which has been supported by external funding from IIT Ropar. Additionally, he has made significant strides in Deformation Machining and biocompatible metallic implants, reflecting his commitment to advancing both practical and theoretical aspects of mechanical engineering.Dr. Agrawal has also been instrumental in developing new approaches for micro-incremental sheet forming and enhancing accuracy through artificial intelligence techniques, demonstrating his innovative approach to solving complex engineering problems.

Accolades and Recognition 🏆

Dr. Agrawal’s academic excellence is evident from his impressive performance in the Graduate Aptitude Test in Engineering (GATE) 2000, where he scored in the 98.74 percentile and secured an All India Rank of 132. His contributions to mechanical engineering have been recognized through various roles, including serving as an Associate Editor for SADHANA, the journal of the Indian Academy of Sciences, since October 2013. He is also a member of the American Society of Mechanical Engineers (ASME) and a reviewer for several prestigious journals, reflecting his standing in the academic community.

Impact and Influence 🌍

Dr. Agrawal’s impact extends beyond academia into practical applications. His research in incremental forming processes and additive manufacturing has influenced industry practices and contributed to advancements in manufacturing technologies. His work on enhancing the accuracy of roboforming and developing micro-manufacturing techniques has potential applications in various industries, including aerospace, automotive, and biomedical engineering.His leadership in establishing and revamping laboratories at IIT Ropar, such as the Advanced Manufacturing Technology Laboratory and the Micromachining Lab, has provided essential resources for cutting-edge research and development in mechanical engineering.

Legacy and Future Contributions 🚀

Dr. Agrawal’s legacy is one of innovation and dedication to advancing mechanical engineering. His contributions have paved the way for future research in manufacturing processes and have influenced both academic and industrial practices. Looking ahead, his focus on developing new manufacturing techniques and exploring the integration of artificial intelligence in engineering processes promises to shape the future of the field.As he continues to mentor Ph.D. students and guide research projects, Dr. Agrawal’s influence is expected to grow, inspiring the next generation of engineers and researchers. His ongoing projects, including those focused on incremental forming and hybrid manufacturing processes, are likely to yield significant advancements and further his impact on the field.In summary, Dr. Anupam Agrawal’s career is characterized by a commitment to excellence, innovation, and a profound influence on the field of mechanical engineering. His work continues to inspire and advance the boundaries of technology, making significant contributions to both academia and industry.

Citations

A total of 1070 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations        1070
  • h-index           80
  • i10-index        15

Notable Publications 

  • Enhancing formability in Micro-Incremental sheet forming by a novel stacking method of ultra-thin sheets
    Pal, M., Agrawal, A., Nirala, C.K.
    Manufacturing Letters, 2024.
  • Surface quality enhancement of warm incremental forming process using solid lubricant with varying etching period
    Kumar, N., Upadhyay, R.K., Sharma, C.S., Agrawal, A.
    Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2024.
  • Fabrication of drug-loaded graded porous Ti6Al4V structures for load-bearing biomedical applications
    Singh, M., Gill, A.S., Deol, P.K., Agrawal, A.
    Journal of Materials Research, 2024.
  • Bio-corrosion susceptibility of surface voids and pores in microwave sintered Ti-HAp based bio-composites
    Kumar, R., Agrawal, A.
    Materials Letters, 2024.
  • Adjustable link twist angle coupling for reconfigurable manipulator
    Kushwaha, A.K., Singla, E., Agrawal, A.
    Indian Journal of Engineering and Materials Sciences, 2024.

Anjana Menon | Engineering | Best Researcher Award

Mrs. Anjana Menon | Engineering | Best Researcher Award

NATIONAL INSTITUTE OF TECHNOLOGY CALICUT- India

Author Profile

📚Early Academic Pursuits

Anjana R. Menon’s academic journey began with a strong foundation in civil engineering, marked by stellar performances in her schooling and higher education. She completed her B.Tech in Civil Engineering from NSS College of Engineering, Palakkad (2010-2014), achieving a commendable CGPA of 8.93/10 and receiving an AICTE scholarship for her merit. Her academic excellence continued through her M.Tech in Geotechnical Engineering at NITK Surathkal (2015-2017), where she excelled with a CGPA of 9.55/10. Her thesis on “Numerical Studies on Prefabricated Horizontal Drain (PHD) Induced Consolidation” showcased her aptitude for complex problem-solving in soil mechanics.

💼Professional Endeavors

Anjana’s professional career began as a Project Assistant at Kerala State Council for Science, Technology, and Environment (July 2014-May 2015). This role provided her with initial exposure to research and development in geotechnical engineering. Her subsequent position as an Assistant Professor at Sahrdaya College of Engineering, Thrissur, Kerala, from July 2017 to December 2018, allowed her to impart her knowledge to undergraduate students and guide technical projects on innovative topics like Baggase Geotextile and Glass Fibre Reinforced Gypsum (GFRG) Hollow Bricks.Currently, as a Ph.D. Scholar and Assistant Professor at NITC, Anjana has focused on advancing research in ground improvement techniques using stone columns and geosynthetics. Her role includes not only teaching but also guiding undergraduate projects and conducting significant research in sustainable construction practices.

🔬Contributions and Research Focus

Anjana’s research contributions are both impactful and forward-thinking. Her doctoral research, supported by the Science Engineering Research Board (SERB), India, investigates the performance of encased stone columns improved with a geocell basal platform. This work aims to provide a cost-effective, sustainable alternative to conventional Geosynthetic Reinforced Piled Embankments (GRPES), particularly relevant for developing nations like India. The integration of natural fibers, such as coir, and waste materials, like rubber tire crumbs, into the geocell infill is a testament to her commitment to eco-friendly engineering practices.Her research includes a variety of publications in prestigious journals, such as the “International Journal of Geosynthetics and Ground Engineering” and “Computers and Geotechnics,” addressing critical aspects of soil reinforcement, geosynthetic testing, and finite element analysis of soil structures.

🏆Accolades and Recognition

Anjana has earned recognition for her exceptional work and contributions in the field of geotechnical engineering. She was selected to present her technical paper at the 6th International Engineering Symposium (IES2017) at Kumamoto University, Japan. This international exposure underscores her standing in the global engineering community. Her research work has been supported by grants and funding from SERB, India, highlighting the value and impact of her contributions to the field.

🌍Impact and Influence

Anjana’s work has significant implications for the construction industry, particularly in the realm of sustainable and cost-effective ground improvement techniques. Her research on stone columns and geocell platforms addresses critical challenges in soil reinforcement and stability, offering practical solutions that can be implemented in real-world scenarios. By focusing on integrating natural and waste materials, she contributes to the broader goal of promoting sustainable engineering practices and reducing environmental impact.Her influence extends beyond research, as she actively participates in teaching and guiding the next generation of engineers. Her dedication to academic research and education fosters innovation and encourages students to explore sustainable solutions in engineering.

🔮Legacy and Future Contributions

As Anjana R. Menon continues her journey in academia and research, her legacy is likely to be marked by her commitment to advancing sustainable engineering practices and her role in mentoring future engineers. Her research on geosynthetics and ground improvement techniques will likely pave the way for further innovations in the field.Looking ahead, Anjana’s future contributions may include expanding her research to explore new materials and methods for soil improvement, enhancing the efficiency of construction techniques, and continuing to promote eco-friendly practices. Her ongoing work will contribute to the development of more sustainable and cost-effective solutions in geotechnical engineering, reinforcing her position as a leader in the field.For more details or to connect with Anjana R. Menon, you can reach her via email at anjana5193@gmail.com or visit her LinkedIn profile. She is also available at NITC Surathkal, where she continues her impactful work in geotechnical engineering.

Citations

A total of 26 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations         26
  • h-index           2
  • i10-index        1

Notable Publications 

Experimental and Numerical Investigation of Column-Supported Soft Clays Reinforced with Basal Geocell
AR Menon, A Bhasi, S Konnur
Transportation Infrastructure Geotechnology 11 (2), 675-702
22024
Time-dependent study of load transfer mechanism in geocell reinforced soil bed
AR Menon, A Bhasi
Materials Today: Proceedings
12023
Evaluation of Critical Length of Encasement for Stone Column-Supported Embankment with Basal Geocell
AR Menon, A Bhasi
Arabian Journal for Science and Engineering, 1-23
2024
Comparative Assessment of Geocell and Geogrid Reinforcement for Flexible Pavement: Numerical Parametric Study
AR Menon, A Bhasi
International Conference on Structural Engineering and Construction …
2023
Numerical Parametric Study on Time-Dependent Response of Geocell-Reinforced Flexible Pavements
AR Menon, A Bhasi
International Conference on Trends and Recent Advances in Civil Engineering …