Suresh Sethu | Engineering | Best Researcher Award

Dr. Suresh Sethu | Engineering | Best Researcher Award

Assistant Professor at NPR College of Engineering and Technology, India

Dr. Suresh S is an accomplished academic and researcher with over 15 years of professional experience in mechanical engineering. His expertise spans teaching, research, and product development, particularly in the fields of composite materials and sustainable technologies. With a Ph.D. in composite materials from Kalasalingam Academy of Research and Education, he has made significant contributions to scientific literature, authoring numerous high-impact publications in SCI-indexed journals. Dr. Suresh’s commitment to environmental sustainability is evident in his work on biodegradable composites and natural fibers. Additionally, he has been recognized for his academic excellence and leadership roles, such as serving as an R&D cell member and NSS officer. His dynamic career reflects a blend of innovative research, academic dedication, and practical application of engineering principles.

Professional Profile

Education

Dr. Suresh S holds a Ph.D. in Composite Materials from Kalasalingam Academy of Research and Education (2024). He earned his Master’s degree in Manufacturing Engineering from KLN College of Engineering, Madurai, securing a distinction with 81%. His undergraduate studies in Mechanical Engineering were completed at Arulmigu Kalasalingam College of Engineering under Anna University, where he achieved a commendable 71%. His academic foundation is reinforced by excellent performance in secondary and higher secondary education, scoring 72% in HSC and 79.6% in SSLC. This strong academic background has enabled Dr. Suresh to excel in his teaching and research career, establishing him as a scholar committed to lifelong learning and innovation.

Professional Experience

Dr. Suresh S has a diverse professional background, combining academic and industry experience. He currently serves as an Assistant Professor in the Mechanical Engineering Department at NPR College of Engineering and Technology. Previously, he was a Project Assistant for the DST-SEED STI HUB at Kalasalingam Academy of Research and Education, contributing over three years to cutting-edge research. His decade-long tenure as an Assistant Professor at KLN College of Engineering highlights his dedication to teaching and curriculum development. Additionally, he worked as a Business Development Officer at Indo Technological Services, gaining industry insights. Over the years, Dr. Suresh has taken on administrative roles such as NSS Officer and R&D Cell Member, showcasing his leadership capabilities and commitment to academic and extracurricular excellence.

Research Interests

Dr. Suresh S’s research interests focus on sustainable engineering solutions, particularly in composite materials and biodegradable polymers. He specializes in the development of natural fiber-reinforced composites, aiming to replace synthetic materials with eco-friendly alternatives. His work includes characterizing bamboo fibers, optimizing 3D printing with biocomposites, and studying the tribological properties of materials. Additionally, he is passionate about leveraging advanced technologies like additive manufacturing and thermo-catalytic pyrolysis for sustainable energy and materials development. His research aligns with global trends in environmental sustainability, reflecting a commitment to addressing pressing challenges in the engineering and materials science domains.

Research Skills

Dr. Suresh S possesses a strong arsenal of research skills, particularly in material characterization and composite development. He is proficient in advanced testing methods, including ultrasonic, radiographic, liquid penetrant, and magnetic particle testing, certified under ASNT Level II. Additionally, he is skilled in AutoCAD and Origin, which enhance his design and data analysis capabilities. His expertise in conducting thermal, chemical, tensile, and tribological studies has resulted in impactful publications. Dr. Suresh is also experienced in optimizing manufacturing processes through techniques like the Taguchi method. His hands-on experience in developing products such as bamboo fiber extraction machines and natural fiber-based 3D printed composites demonstrates his ability to translate theoretical research into practical innovations.

Awards and Honors

Dr. Suresh S has been recognized for his excellence in academics and research through multiple awards. He received a cash award for achieving a 100% success rate in university examinations, reflecting his commitment to teaching quality. Additionally, his dedication to work earned him recognition for not availing of any leave for an entire year. His role in groundbreaking research projects, particularly in the DST-SEED STI HUB, highlights his ability to contribute meaningfully to national initiatives. With his achievements in publications, leadership roles, and sustained academic contributions, Dr. Suresh continues to establish himself as a respected figure in engineering education and research.

Conclusion

Dr. Suresh S’s career exemplifies a perfect blend of academic rigor, innovative research, and professional dedication. With a strong educational background, impactful publications, and expertise in composite materials, he has significantly contributed to both academia and industry. His research on biodegradable composites and sustainable materials reflects his commitment to addressing global environmental challenges. Through teaching, leadership, and collaboration, Dr. Suresh has cultivated a legacy of excellence, making him a strong contender for the Best Researcher Award. His work serves as an inspiration for aspiring engineers and researchers, demonstrating the value of combining technical expertise with a vision for sustainable innovation.

Publication Top Notes

  1. Title: Effect of Cu MOF-based functional catalysts on cracking and adsorption of bio-oil compounds via thermo-catalytic pyrolysis: A net zero emission scenario
    Authors: Pownraj, C., Karthik, A., Prabhu, B., Katiyar, J.K., Valan Arasu, A.
    Year: 2025
  2. Title: The effect of infill density on tensile properties of 3D printed chopped carbon fiber reinforced PLA composites materials
    Authors: Mayandi, K., Rigesh, K., Iyyappan, K., Sethu, S.
    Year: 2024
  3. Title: Production and characterization of biodegradable polylactic acid composites 3D filament from agro waste
    Authors: Kalimuthu, M., Sethu, S., Vijay, R.D., Karthikeyan, K.R., Sethuramalingam, P.
    Year: 2024
  4. Title: Tribological investigations on fibre-reinforced composites: a comprehensive review considering variable velocity and load scenarios
    Authors: Sethu, S., Kalimuthu, M., A, U., Mohan, M.
    Year: 2024
  5. Title: Cu MOF-biocarbon functional catalysts as adsorbent for oxygen-linked carbon capture via thermo-catalytic pyrolysis: A low-carbon fuel synthesis strategy
    Authors: Pownraj, C., B․, P., Katiyar, J.K., Sethu, S., Valan Arasu, A.
    Year: 2024
    Citations: 2
  6. Title: Hybrid fabrication and characterization of biocompatible Bamboo/PLA composites
    Authors: Sethu, S., Kalimuthu, M., Nagarajan, R., Mohammad, F., Arul Kumar, M.
    Year: 2024
    Citations: 1
  7. Title: Investigation of tribo-thermal properties of inter-mixed AYSZ nanoceramic composite/SAE20W40 nanolubricant
    Authors: Pownraj, C., Karthik, A., Suresh, S., Arasu, A.V., Katiyar, J.K.
    Year: 2023
  8. Title: Thermal, chemical, tensile and morphological characterization studies of bamboo fibre extracted from the Indian species Bambusa bambos
    Authors: Sethu, S., Kalimuthu, M., Nagarajan, R., Mohammad, F., Al-Lohedan, H.A.
    Year: 2023
    Citations: 4
  9. Title: Characterization on a physical and mechanical bamboo surface treated and untreated fiber
    Authors: Sethu, S., Kalimuthu, M., Nagarajan, R., Muthukannan, M., Murali, M.
    Year: 2023

 

 

Jiakun Zhu | | Engineering | Best Researcher Award

Dr. Jiakun Zhu | Engineering | Best Researcher Award

Teaching Assistant,  College of Post and Telecommunication of WIT,  China

Jiakun Zhu is a promising researcher in the field of Civil Engineering with a strong academic background, holding both a Bachelor’s and Ph.D. from Huazhong University of Science and Technology. His research focuses on materials science, nanotechnology, and engineering applications, reflected in his diverse publications in prestigious journals like ACS Applied Materials & Interfaces and Analytical Chemistry. Zhu has contributed to cutting-edge research on dielectric elastomers, hydrogels, and lithium-ion batteries, showcasing his expertise across interdisciplinary fields. His work has been widely cited, and he has taken a leadership role as a corresponding author on a 2024 publication, further establishing his prominence in the research community. Currently employed at the College of Post and Telecommunication of WIT, Zhu continues to make significant strides in engineering research. His growing list of accomplishments positions him as a strong candidate for the Research for Best Researcher Award, with the potential for continued impact in his field.

Profile

Education 

Jiakun Zhu has an impressive academic background rooted in Civil Engineering, having completed both his Bachelor’s and Ph.D. degrees at Huazhong University of Science and Technology (HUST), one of the leading institutions in China. He earned his Bachelor’s degree in 2015, laying a strong foundation in engineering principles. Motivated to pursue advanced research, Zhu continued his academic journey at HUST, where he earned his Ph.D. in 2021. His doctoral studies enabled him to specialize in complex areas such as dielectric elastomers and nanotechnology, equipping him with the skills necessary to contribute to groundbreaking research in the field of civil engineering. HUST’s rigorous academic environment and Zhu’s research focus on cutting-edge materials science have significantly shaped his expertise. This robust educational background, combined with his research experience, places him in an excellent position to excel as a leading researcher in civil engineering and related interdisciplinary fields.

Professional Experience

Jiakun Zhu has established himself as a dedicated researcher in Civil Engineering, with a focus on the mechanical behavior of advanced materials. Currently serving at the College of Post and Telecommunication of WIT, Zhu’s professional experience is marked by significant contributions to materials science, particularly in dielectric elastomers, hydrogels, and nanotechnology. His work on in-situ transmission electron microscopy has advanced understanding of lithium-ion battery materials, while his expertise in polymer chain entanglements and finite extensibility has influenced the development of novel hydrogels. As a corresponding author, Zhu has demonstrated leadership in collaborative research, contributing to journals with high impact factors. His interdisciplinary approach, spanning civil engineering and applied materials science, reflects a professional career committed to innovation and solving complex engineering challenges. Zhu’s ability to bridge theoretical research with practical applications marks him as an asset to the engineering and materials science community.

Research Interests

Jiakun Zhu’s research interests lie at the intersection of civil engineering, materials science, and nanotechnology. His work focuses on the mechanical behavior and stability of advanced materials, particularly dielectric elastomers and hydrogels, which are crucial for developing flexible and durable engineering structures. Zhu is also deeply invested in understanding the effects of polymer chain entanglements and finite extensibility on the mechanical performance of these materials, which has significant implications for their application in smart materials and soft robotics. Additionally, his research extends to the field of energy storage, where he investigates the chemical and structural evolution of nanomaterials in lithium-ion batteries. Zhu’s interdisciplinary approach allows him to address both theoretical challenges and practical applications, contributing to advancements in materials engineering, energy storage, and sustainable infrastructure. His ongoing work aims to explore the potential of engineered nanocomposites in marine environments, further broadening the scope of his research interests.

Research Skills

Jiakun Zhu demonstrates exceptional research skills through his ability to address complex problems in civil engineering and materials science. His expertise spans various domains, including the mechanical behavior of hydrogels, dielectric elastomers, and lithium-ion batteries, showcasing his versatility. Zhu’s research on the influence of polymer chain entanglements and finite extensibility on mechanical stability illustrates his capability to merge theoretical analysis with experimental techniques. Additionally, his proficiency in using advanced tools, such as In-Situ Transmission Electron Microscopy, highlights his technical acumen. His role as a corresponding author reflects strong leadership and collaboration in multi-disciplinary research. Moreover, Zhu’s work has been published in prestigious journals with high impact factors, such as ACS Applied Materials & Interfaces and Analytical Chemistry, further underscoring the significance and rigor of his contributions. His innovative approach, combined with technical expertise, positions him as a highly skilled researcher making meaningful advancements in his field.

Awards and Honors

Jiakun Zhu has been recognized for his outstanding contributions to civil engineering and materials science. His research achievements have earned him several prestigious awards and honors, highlighting his commitment to academic excellence and innovation. He was honored with the “Outstanding Ph.D. Dissertation Award” from Huazhong University of Science and Technology in 2021, acknowledging the groundbreaking nature of his doctoral research on dielectric elastomers and hydrogels. Zhu’s work has also been recognized internationally, as evidenced by his publications in top-tier journals like ACS Applied Materials & Interfaces and Analytical Chemistry, both of which have significantly advanced the understanding of nanotechnology and energy storage materials. Additionally, Zhu has been invited to present his findings at numerous international conferences, further solidifying his reputation in the research community. His leadership as a corresponding author in recent publications showcases his growing influence in the field. These accolades underscore his potential for continued success and his suitability for further recognition in the form of research awards.

Conclusion 

Jiakun Zhu’s educational pedigree, professional field, and an impressive list of high-impact publications make him a strong candidate for the Research for Best Researcher Award. His diverse research contributions in materials science, civil engineering, and nanotechnology position him as an innovative scholar with the potential to make significant future advances. The recognition Zhu has garnered thus far through his publications suggests he is both an established and emerging leader in his field.

Publication Top Notes

  1. “Effects of entanglements and finite extensibility of polymer chains on the mechanical behavior of hydrogels”
    • Authors: Jun Luo, Jiakun Zhu
    • Year: 2018
    • Journal: Acta Mechanica
    • DOI: 10.1007/S00707-017-2060-8
    • Citations: Check Web of Science for updated citation count
    • WOSUID: WOS:000430184900015
  2. “Snap-through instability analysis of dielectric elastomers with consideration of chain entanglements”
    • Authors: Zhongmin Xiao, Jun Luo, Jiakun Zhu
    • Year: 2018
    • Journal: Materials Research Express
    • DOI: 10.1088/2053-1591/AAC6FE
    • Citations: Check Web of Science for updated citation count
    • WOSUID: WOS:000434485600004
  3. “Bending gel beam with consideration of entanglements and finite extensibility”
    • Authors: Jiakun Zhu
    • Year: 2018
    • Journal: EPL (Europhysics Letters)
    • Citations: Check Web of Science for updated citation count
  4. “Effect of entanglements on the electromechanical stability of dielectric elastomers”
    • Authors: Jun Luo, Jiakun Zhu
    • Year: 2017
    • Journal: EPL (Europhysics Letters)
    • DOI: 10.1209/0295-5075/119/26003
    • Citations: Check Web of Science for updated citation count
    • WOSUID: WOS:000414715000014
  5. “Ionic Conduction in Composite Polymer Electrolytes: Case of PEO

    Composites”

    • Authors: Jiakun Zhu
    • Year: (No year provided; more information required)
  6. “Ultrahigh Malleability of the Lithiation-Induced LixSi Phase”
    • Authors: Jiakun Zhu
    • Year: (No year provided; more information required)