Amol N. Patil | Fiber Characterization and Testing | Best Researcher Award

Prof. Amol N. Patil | Fiber Characterization and Testing | Best Researcher Award

Professor at Ajeenkya DY Patil School of Engineering, Maharashtra, India

Profile:

📚 Amol N. Patil: Engineering Educator & Mechanical Expert

🎓Early Academic Pursuits

Mr. Amol N. Patil, born on January 1, 1980, embarked on his academic journey with a keen interest in mechanical engineering. He completed his Diploma in Mechanical Engineering from the Maharashtra State Board of Technical Education, Mumbai, achieving a commendable first-class distinction with a score of 74.42%. Continuing his pursuit of knowledge, he earned a Bachelor’s degree in Mechanical Engineering from Savitribai Phule Pune University, Pune, India. Here, he again demonstrated his academic prowess by graduating with first-class honors, securing a percentage of 64.25%.

Driven by his passion for advanced studies, Mr. Patil pursued a Master’s degree in Mechanical Design Engineering at the same university, where he specialized in subjects like Advanced Manufacturing Design (AMD), Advanced Strength of Materials (ASA), Advanced Solid Mechanics (ASM), and others. He graduated with a CGPA of 7.42, reflecting his dedication and understanding of complex mechanical engineering concepts. Currently, Mr. Patil is pursuing a Ph.D. in Mechanical Engineering, focusing on innovative research areas such as Shape Memory Polymers, 3D/4D Printing, and Diabetic Shoe Insole Development.

🏢Professional Endeavors

Mr. Patil’s professional journey is a blend of academic and industrial experiences. He began his career in the industry, working in various capacities such as Engineer Assembly at PMT Machines Ltd., and as a CNC Operator & Programmer at Divagi Warner Pvt Ltd and Wallia Industries. These roles allowed him to gain practical insights into machine tool assembly and CNC operations, which significantly complemented his academic knowledge.

In 2010, Mr. Patil transitioned to academia as an Assistant Professor in Mechanical Engineering at Siddhant College of Engineering, Sudumbare, Maval, Pune. His dedication to teaching and research was evident as he took on various responsibilities, including guiding undergraduate and postgraduate students. In 2014, he joined Ajeenkya DY Patil School of Engineering, Lohegaon, Pune, where he has been serving as an Assistant Professor and ME Coordinator in Mechanical Engineering. His role involves coordinating the Master’s program, ensuring a high standard of education, and mentoring students.

🔬Contributions and Research Focus

Mr. Patil’s research interests are diverse, encompassing advanced materials and manufacturing technologies. His ongoing Ph.D. research delves into Shape Memory Polymers and 3D/4D Printing, with a specific focus on developing innovative solutions like diabetic shoe insoles. This work highlights his commitment to applying engineering principles to solve real-world problems, particularly in healthcare.

He has contributed extensively to academic literature, publishing numerous papers in reputed journals and conferences. Notably, his work on “Development of 4D Printed Thermoplastic Urethane Insoles to Reduce/Redistribute Plantar Pressure in Diabetic Foot Ulcer Patients” demonstrates his focus on practical applications of emerging technologies. Additionally, he has authored books on subjects like Quality & Reliability Engineering, adding valuable resources to the academic community.

🏆Accolades and Recognition

Throughout his career, Mr. Patil has received several accolades for his contributions to academia and research. He has served as a paper reviewer for various conferences, including ICRAMEN 2024 and MECH PGCON, underscoring his expertise in the field. His role as a session in-charge and his involvement in syllabus design for postgraduate courses further attest to his academic leadership.

Mr. Patil’s commitment to student development and welfare is evident from his responsibilities as a Student Development Officer and Student Welfare Officer at Ajeenkya DY Patil School of Engineering. He has also been an external examiner and a guide for numerous postgraduate students, shaping the next generation of engineers.

🌍Impact and Influence

Mr. Patil’s work has had a significant impact on both academia and industry. His research in 4D printing and shape memory polymers holds the potential to revolutionize healthcare products, particularly in designing customized medical devices. His contributions to teaching have helped mold the careers of countless students, providing them with the skills and knowledge necessary to succeed in the competitive field of mechanical engineering.

His books and publications serve as important academic resources, aiding students and researchers alike. Moreover, his involvement in professional organizations such as ISTE, IEEE, and IAENG reflects his commitment to staying at the forefront of technological advancements and sharing his knowledge with the broader engineering community.

🌟Legacy and Future Contributions

Looking ahead, Mr. Patil aims to continue his research in advanced manufacturing and materials science, with a particular interest in expanding the applications of 4D printing technology. His future work will likely explore new frontiers in mechanical engineering, potentially leading to breakthroughs that could benefit various industries, including healthcare, automotive, and aerospace.

Mr. Amol N. Patil’s career is a testament to his dedication to mechanical engineering, education, and research. His contributions have left a lasting impact on both the academic and industrial communities, and his future endeavors promise to further advance the field. As an educator, researcher, and mentor, Mr. Patil continues to inspire and influence future engineers, ensuring a lasting legacy in the world of mechanical engineering.

📖Publications:

Paper Title: Shape memory and shape recovery characterization of thermoplastic urethane

  • Authors: Amol N. Patil, S. H. Sarje
  • Journal: Advances in Materials and Processing Technologies
  • Year: 2024

Paper Title: Additive manufacturing with shape changing/memory materials: A review on 4D printing technology

  • Authors: Amol N. Patil, S. H. Sarje
  • Journal: Materials Today: Proceedings
  • Year: 2021

Paper Title: Numerical and experimental analysis of a small horizontal axis wind turbine rotors

  • Authors: Manoj Kumar Chaudhary, S. Prakash, S. Kushawaha, P. Humbre, Amol N. Patil
  • Journal: AIP Conference Proceedings
  • Year: 2020

Daisy Nestler | Electrical and Thermal Conductivity of FRPs | Best Researcher Award

Prof Dr. Daisy Nestler | Electrical and Thermal Conductivity of FRPs | Best Researcher Award

Technische Universität Chemnitz, SLK, TKV –  Germany

Professional Profiles:

Prof. Dr.-Ing. habil. Daisy Nestler: A Trailblazer in Composite Materials and Lightweight Structures 🏗️

Early Academic Pursuits 📚

Prof. Dr.-Ing. habil. Daisy Nestler embarked on her academic journey at TU Chemnitz, where she earned her Doctorate in 1988. Her thesis focused on the “Influencing of layer formation by carbon and modified process parameters during CVD-boriding of ferrous materials.” She later achieved her habilitation in 2013 with a dissertation titled “Composite Materials – Material Compounds: Status quo and research approaches,” establishing herself as a leading expert in composite materials and hybrid compounds.

Professional Endeavors and Leadership Roles 🚀

Prof. Nestler’s career has been marked by numerous leadership roles:

  • Since April 2022, she has been leading the Funded Research Group “Textile Plastic Composites and Hybrid Compounds.”
  • From October 2016 to March 2022, she served as the Head of the Endowed Chair “Textile Plastic Composites and Hybrid Compounds” at the Institute of Lightweight Structures, Chemnitz University of Technology (CUT).
  • Her previous roles include being the Development Coordinator for “Hybrid Materials in Textile Lightweight Construction” at the Saxon Textile Research Institute e. V. (2017-2018) and Head of the Research Domain “Semi-finished Products and Preform Technologies” in the Cluster of Excellence 1075 “Merge Technologies for Multifunctional Lightweight Structures, MERGE” (2012-2019).

Research Focus and Innovations 🔬

Prof. Nestler’s research encompasses a broad spectrum of areas within materials science, including:

  • Preforms and Preform Technologies
  • Composite Materials (Polymer-Matrix Composites, Metal-Matrix Composites, Ceramic-Matrix Composites, Interpenetrated Phase Composites)
  • Hybrid Compounds
  • Lightweight Structures
  • Interface Engineering
  • CVD- and PVD-Coatings
  • Microstructure Analysis

Her innovative work has significantly advanced the understanding and application of composite materials in various industries, particularly in lightweight construction and hybrid material engineering.

Accolades and Recognition 🏆

Prof. Nestler’s contributions to materials science have been recognized through numerous awards and appointments:

  • Since October 2020, she has chaired the Technical Committee 05 (Materials Science and Physical Technologies) of ASIIN e. V.
  • She has been an expert for the Accreditation of study courses of ASIIN e. V. since May 2016.
  • In 2015, she was appointed as a Professor (apl.) at TU Chemnitz.
  • Her extensive publication record includes approximately 190 publications, 17 book chapters, and the acquisition of significant third-party funding (DFG, EU, BMWi, BMBF).

Impact and Influence 🌟

Prof. Nestler’s work has not only advanced academic research but also influenced practical applications in the industry. She has contributed to the development of new materials and technologies, enhancing the performance and durability of composite materials used in lightweight structures. Her leadership in various research groups and committees has fostered collaboration and innovation across the field of materials science.

Legacy and Future Contributions 🌍

Prof. Nestler’s ongoing research and dedication to teaching ensure that her impact on the field will continue to grow. Her work on composite-based hybrid technologies, fiber-reinforced plastics, and innovative material engineering has set a high standard for future research and development. She remains committed to mentoring young scientists and advancing the field of materials science through her continued research and professional activities.

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