Karim Heydari | Engineering | Best Researcher Award

Dr. Karim Heydari | Engineering | Best Researcher Award

Isfahan University of Technology | Iran

Dr. Karim Heydari is a distinguished scientist and academic in the field of textile engineering and polymer science, renowned for his expertise in developing sustainable and high-performance polymer composites. His research has been instrumental in transforming recycled polyethylene terephthalate (PET) into advanced textile fibers with improved mechanical integrity, flame resistance, and processability. Through innovative use of nanotechnology, eco-friendly flame-retardant systems, and molecular chain extenders, Dr. Heydari has contributed significantly to bridging environmental sustainability with industrial-scale manufacturing. His dedication to advancing polymer recycling technologies positions him as a leading figure in sustainable materials research.

Professional Profile

ORCID

Education

Dr. Heydari holds a strong academic background in textile engineering, polymer processing, and materials science, with specialized training in fiber manufacturing technologies, rheological property analysis, and nanocomposite engineering. His educational journey has provided him with a unique interdisciplinary skill set, enabling him to address challenges in polymer degradation, fiber spinning, and additive compatibility with scientifically sound and technologically viable solutions.

Experience

Throughout his career, Dr. Heydari has led and collaborated on multiple high-impact research projects focused on the optimization of recycled polymers for advanced textile applications. His work encompasses the full material development chain from feedstock selection and additive formulation to reactive extrusion, melt spinning, and product testing. He has applied advanced analytical techniques such as scanning electron microscopy, X-ray diffraction, thermogravimetric analysis, and rheological characterization to evaluate and enhance composite performance. In addition to academic publications, Dr. Heydari has actively collaborated with industrial partners to translate laboratory innovations into production-ready materials, particularly for applications demanding both performance and environmental compliance.

Research Interest

Dr. Heydari’s research interests cover a broad range of topics in sustainable material science, including polymer recycling and upcycling, flame-retardant fiber composites, nano clay dispersion technologies, rheology-driven process optimization, and environmentally friendly additive systems. He is particularly passionate about valorizing multiple-recycled PET often considered unsuitable for high-quality applications  by restoring its molecular architecture and enhancing its functional properties. His research is driven by the goal of creating textile fibers that meet rigorous mechanical, thermal, and safety standards without compromising ecological responsibility.

Awards

Dr. Heydari has gained recognition for his pioneering contributions to sustainable polymer technology and textile engineering. His innovative approach to combining zinc phosphinate flame retardants, Cloisite 30B nanoclay, and multifunctional epoxy-based chain extenders has resulted in composites with exceptional flame resistance, thermal stability, and spinnability. These advancements not only contribute to safer and more durable textile products but also support global sustainability initiatives. His ability to merge scientific innovation with industrial applicability makes him a highly deserving candidate for the Best Researcher Award.

Publications

Dr. Karim Heydari has contributed impactful research on the rheological, thermal, and mechanical enhancement of recycled polyethylene terephthalate (PET) composites, with a focus on flame retardancy and spinnability.

Title: Enhanced Spinning Properties of Chain‐Extended Flame‐Retarded Multiple‐Recycled PET/Cloisite 30B Nanocomposite
Journal: Journal of Applied Polymer Science
Published on: August 2025

Title: Rheological Probing Molecular Weight Increase in Flame Retarded Doubly Recycled PET in the Presence of Nanoclay and Investigating its Spinnability
Journal: Preprint
Published on: January 2025

Conclusion

Dr. Karim Heydari’s contributions to polymer recycling and textile engineering represent a significant step forward in the creation of sustainable, high-performance materials. His work addresses urgent environmental challenges associated with polymer waste while providing viable solutions for industrial fiber production. By integrating advanced material science with practical manufacturing processes, he continues to influence the fields of textile engineering, polymer technology, and sustainable manufacturing. His research not only pushes the boundaries of scientific understanding but also demonstrates a commitment to creating eco-conscious innovations that can be adopted across global industries.

Priyanka Salunkhe | Engineering | Women Researcher Award

Assoc. Prof. Dr. Priyanka Salunkhe | Engineering | Women Researcher Award

Terna Engineering college, Nerul, Navi Mumbai | India

Dr. Priyanka Vijay Salunkhe serves as the Head and Associate Professor in the Department of Civil Engineering at Terna Engineering College, Nerul, Navi Mumbai. With a deep-rooted passion for structural engineering, she has dedicated her career to enhancing civil infrastructure through innovation and quality monitoring. Her expertise spans research, consultancy, and academic leadership, making significant contributions to engineering education and practice.

Professional profile👤

Google Scholar

Strengths for the Awards✨

  • Diverse Research Portfolio: Dr. Salunkhe has led projects involving advanced materials like Shape Memory Alloys and High-Strength Concrete, showcasing innovation in enhancing civil infrastructure performance and safety.
  • Industry Collaboration: Her involvement in multiple consultancy projects, structural audits, and construction quality monitoring demonstrates strong industry engagement and practical application of research.
  • Patent Achievements: Two patents, including one on water purification, highlight her ability to translate research into tangible innovations.
  • Publication Record: She has authored numerous papers in respected journals, including Springer publications, reflecting a consistent contribution to scientific literature.
  • Mentorship and Leadership: As Head & Associate Professor, she plays a key role in guiding students and leading her department, reflecting leadership and academic mentorship.

Education 🎓

Dr. Salunkhe holds a Ph.D. in Civil Engineering, where her research focused on advancing construction materials and techniques to improve infrastructure resilience. Her academic journey reflects a strong commitment to integrating theoretical knowledge with practical applications.

Experience

Dr. Salunkhe has led numerous structural audits, consultancy projects, and quality monitoring initiatives across Maharashtra. Notable projects include construction quality monitoring for model school buildings, structural audits for military and municipal infrastructure, and proof-checking for bridges and buildings. She has been empaneled as a Structural Quality Monitor (SQM) with the Tribal Development Department and contributed to projects undertaken by IIT Bombay.

Research Interests On Engineering 🔬

Her research interests lie in structural health monitoring, shape memory alloys, high-strength concrete, and sustainable construction materials. She actively explores innovative solutions for enhancing infrastructure safety and performance under extreme conditions.

Awards 🏆

  • Recipient of a Minor Research Grant from Mumbai University (2017-18) for her work on iron-based shape memory alloys.
  • Recognized for her consultancy contributions in construction quality monitoring and structural auditing.

Publications 📖

Dr. Salunkhe has an extensive publication record, with works featured in esteemed journals and international conferences. Notable publications include:

  • Title: Effect of replacement of natural sand by manufactured sand on the properties of cement mortar
    Authors: P Jadhav, D Kulkarni
    Year: 2013
    Citations: 102

  • Title: An Experimental Investigation on the Properties of Concrete Containing Manufactured Sand
    Authors: P Jadhav, D Kulkarni
    Year: 2012
    Citations: 67

  • Title: Free and forced vibration control of piezoelectric FGM plate subjected to electro-mechanical loading
    Authors: PA Jadhav, KM Bajoria
    Year: 2013
    Citations: 39

  • Title: Buckling of piezoelectric functionally graded plate subjected to electro-mechanical loading
    Authors: PA Jadhav, KM Bajoria
    Year: 2012
    Citations: 24

  • Title: Stability analysis of piezoelectric FGM plate subjected to electro-mechanical loading using finite element method
    Authors: P Jadhav, K Bajoria
    Year: 2013
    Citations: 13

  • Title: Optimization of seismic response of steel structure using negative stiffness damper
    Authors: PA Jadhav, SA Shaikh
    Year: 2019
    Citations: 9

  • Title: Role of manufactured sand on the strength properties of concrete
    Authors: D Kulkarni, P Jadhav
    Year: 2009
    Citations: 7

  • Title: Buckling of Simply Supported Piezoelectric FGM Plates Subjected to Electro-Mechanical loading using Higher-order Shear Deformation Theory
    Authors: KM Bajoria, PA Jadhav
    Year: 2013
    Citations: 4

  • Title: Stability analysis of functionally graded plate integrated with piezoelectric actuator and sensor subjected to electro-mechanical loading
    Authors: P Jadhav, K Bajoria
    Year: 2012
    Citations: 4

  • Title: A review on stability and vibration control of piezolaminated composite/FGM plate structures
    Authors: PA Jadhav, KM Bajoria
    Year: 2014
    Citations: 3

Conclusion 🔗

Dr. Priyanka Vijay Salunkhe’s work exemplifies a seamless blend of research, innovation, and practical application. Her contributions to civil engineering, particularly in structural health monitoring and sustainable construction, have earned her recognition in academia and industry alike. As she continues to push the boundaries of engineering knowledge, her work paves the way for safer, more resilient infrastructure.