Abhik Sur | Composite Structures | Best Researcher Award
Dr. Abhik Sur, Sister Nivedita University, India.
Dr. Abhik Sur is an esteemed mathematician specializing in thermoelasticity and solid mechanics. He earned his Ph.D. in Applied Mathematics from the University of Calcutta in 2016 and is currently an Associate Professor at Sister Nivedita University, Kolkata. With a strong research background in heat and mass transfer, composite structures, and anisotropic materials, Dr. Sur has made significant contributions to mathematical modeling and computational mechanics. His expertise extends to programming languages such as MATLAB and FORTRAN, enhancing his analytical capabilities. Passionate about research and academia, he has published extensively and actively participates in professional development programs. 

Publication Profiles
Orcid
Scopus
Googlescholar
Education & Experience 

Ph.D. in Applied Mathematics – University of Calcutta (2016)
M.Sc. in Applied Mathematics – University of Calcutta (2010) (Rank: 1st Class 3rd)
B.Sc. in Mathematics (Hons.) – Bidhannagar Govt. College, University of Calcutta (2008) (Rank: 1st)
Diploma in Vocal Classical Music – Prachin Kala Kendra, Chandigarh University (2005)
Teaching Experience:
Associate Professor & Head, Dept. of Mathematics, Sister Nivedita University (Aug 2024 – Present)
Assistant Professor (Grade III), Sister Nivedita University (Apr 2022 – Jul 2024)
Assistant Professor, Sister Nivedita University (Aug 2019 – Apr 2022)
Assistant Professor, Techno Main Salt Lake (Jul 2011 – Aug 2019)
Assistant Professor, Vidyasagar College, University of Calcutta (Sep 2010 – Jul 2011)
Summary Suitability
Dr. Abhik Sur is a distinguished scholar and a deserving recipient of the Best Researcher Award for his outstanding contributions to the fields of thermoelasticity, solid mechanics, and applied mathematics. His extensive research has significantly advanced the understanding of heat and mass transfer, fractional heat conduction, micropolar thermoelasticity, and composite materials. With a career spanning over a decade, Dr. Sur has made pioneering contributions that have had a profound impact on both theoretical and computational aspects of mathematical modeling in engineering and applied sciences.
Professional Development 

Dr. Abhik Sur has actively engaged in academic and professional growth, consistently contributing to mathematics research and education. He has attended multiple national and international conferences, including presenting research at the prestigious 100th Indian Science Congress (2013). He specializes in computational techniques, leveraging software such as MATLAB, MATHEMATICA, and MAPLE for advanced modeling. Additionally, he has supervised research projects on generalized thermoelasticity and fractional heat conduction, enhancing the understanding of solid mechanics. With his ongoing D.Sc. research, he continues to advance his expertise, integrating mathematical theories with real-world engineering applications. 

Research Focus
Dr. Abhik Sur’s research centers on generalized thermoelasticity, heat and mass transfer, solid mechanics, and functionally graded materials. His expertise includes micropolar thermoelasticity, thermo-viscoelasticity, magneto-thermoelasticity, diffusion problems, composite structures, and fiber-reinforced materials. He employs computational methods for solving complex engineering problems, particularly in fractional heat conduction and crack propagation in anisotropic materials. His research significantly impacts structural analysis, material science, and applied mathematics, contributing to the development of efficient mathematical models for real-world mechanical and thermal applications. His work bridges theoretical mathematics and applied engineering, offering innovative solutions in the field of solid and fluid mechanics. 

Awards & Honors 🏆🎖
Arati Mukherjee Award for securing the highest marks in B.Sc. Mathematics (Hons.) at Bidhannagar College.
Young Scientist Presentation at the 100th Indian Science Congress (2013) for research on thermal wave propagation.
Secured 1st Rank in B.Sc. Mathematics (Hons.), University of Calcutta.
Secured 1st Class 3rd Rank in M.Sc. Applied Mathematics, University of Calcutta.
Awarded First Division with Distinction in Vocal Classical Music Diploma (2005). 
Publications Top Noted
Photo-thermo-elastic wave propagation in an orthotropic semiconductor with a spherical cavity and memory responses – Waves in Random and Complex Media 31 (6), 1835-1858, 119 citations, 2021
Modeling of memory-dependent derivative in a fibre-reinforced plate – Thin-Walled Structures 126, 85-93, 66 citations, 2018
Thermoelastic interaction in a viscoelastic functionally graded half-space under three-phase-lag model – European Journal of Computational Mechanics 23 (5-6), 179-198, 56 citations, 2014
Transient response in a piezoelastic medium due to the influence of magnetic field with memory-dependent derivative – Acta Mechanica 230 (7), 2325-2338, 53 citations, 2019
Non-local memory-dependent heat conduction in a magneto-thermoelastic problem – Waves in Random and Complex Media 32 (1), 251-271, 52 citations, 2022
Finite element analysis in a fiber-reinforced cylinder due to memory-dependent heat transfer – Acta Mechanica 230, 1607-1624, 52 citations, 2019
Fractional order generalized thermoelastic functionally graded solid with variable material properties – Journal of Solid Mechanics 6 (1), 54-69, 50 citations, 2014
Current Position: Researcher at the Department of Structural Engineering Research, KICT
With expertise in 3D printing technologies and structural material advancements, Ji-Hun has proposed innovative properties of concrete materials and assessed their structural behavior. His SCI-indexed publications serve as a testament to his commitment to sustainable and cutting-edge solutions in construction and materials science. 

His work emphasizes the properties and behavior of concrete materials, the development of sustainable structural materials, and innovative thermal energy storage solutions.
Additionally, he explores the use of 3D printing technologies in construction and investigates photocatalyst-based methods for fine dust reduction. 


Parami Ama Shakya is a passionate physicist and researcher specializing in dye-sensitized solar cells and



Parami Ama Shakya actively enhances her expertise through various programs and workshops. She completed a six-month program on statistical analysis, research methodology, and scientific writing conducted by FGS, University of Kelaniya. She participated in training sessions on ChemDraw and Adobe Illustrator for Scientific Figures and Illustrations. 
Parami attended workshops on current trends in photo-electrochemical and photovoltaic materials, gaining insights into advanced methodologies. Her involvement in sustainability leadership initiatives and science exhibitions further highlights her commitment to scientific advancement and community outreach.
Her publications in reputed journals and conferences demonstrate her expertise in advancing renewable energy technologies and sustainable solutions. By integrating materials science with cutting-edge photovoltaics, she contributes significantly to eco-friendly energy innovations.
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His global exposure, including visiting roles at Hunter College, enabled him to foster an interdisciplinary understanding of polymer engineering and advanced materials. 



Notably, his research includes polymer-based composites, high-performance functional materials, and sustainable nanomaterials for emerging technologies. 




















