Rathish Kumar Pancharathi | Concrete Making Materials | Best Researcher Award

Prof. Dr Rathish Kumar Pancharathi | Concrete Making Materials | Best Researcher Award

Professor and Dean at National Institute of Technology Warangal, India

Dr. Rathish Kumar Pancharathi is a distinguished Professor and Dean of Planning and Development at the National Institute of Technology (NIT) Warangal, India. With a robust academic background, including a Ph.D. from NIT Warangal and a Doctor of Engineering from Kitami Institute of Technology, Japan, he has over two decades of experience in civil engineering. Dr. Pancharathi specializes in sustainable construction materials, structural health monitoring, and earthquake engineering. He has guided numerous Ph.D. and M.Tech students, published over 250 research papers, and authored several books. His leadership roles include serving on national and international committees, contributing to Indian Standard codes, and collaborating with global institutions. Recognized for his excellence, he has received multiple awards, including the Best Engineering Faculty Award and the Earth Leader Award for Sustainable Development.

Professional Profile

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Education 🎓

  • Post-Doctoral Fellowship (PDF): Kitami Institute of Technology, Japan (2009-2010) 🇯🇵
  • Doctor of Engineering (Dr.Eng.): Kitami Institute of Technology, Japan (2003-2006) 🇯🇵
  • Ph.D.: National Institute of Technology Warangal, India (2000-2003) 🇮🇳
  • M.Tech.: Regional Engineering College, Warangal, India (1990-1992) 🇮🇳
  • B.Tech.: Kakatiya University, India (1986-1990) 🇮🇳
    Dr. Pancharathi’s academic journey is marked by prestigious scholarships, including the Japanese Government’s JSPS and Monbusho Scholarships, and the Indian Government Scholarship. His education spans advanced research in civil engineering, focusing on sustainable materials and structural resilience, laying the foundation for his impactful career.

Experience  💼

Dr. Pancharathi has held key leadership roles, including Dean of Planning and Development and Head of Civil Engineering at NIT Warangal. He has contributed to national standards as a committee member for Indian Standard Codes (IS 2542, IS 712) and the Indian Roads Congress. Internationally, he collaborated with institutions in Japan, New Zealand, and Portugal. His administrative roles include chairing infrastructure and drainage committees, leading accreditation efforts, and managing consultancy projects worth crores of INR. He has also been a primary evaluator for Toycathon 2021, a Government of India initiative. His expertise spans structural stability assessments, design vetting, and sustainable construction practices, making him a pivotal figure in civil engineering.

Awards and Honors  🏆

  • Best Engineering Faculty Award (2023) 🥇
  • Earth Leader Award for Sustainable Development (2020) 🌍
  • Duo-India Fellowship (2020-21) 🇮🇳🇬🇧
  • Aftab Mufti Medal for Structural Health Monitoring (2013) 🏗️
  • JSPS Post-Doctoral Fellowship (2009-2010) 🇯🇵
  • Monbukagakusho Scholarship (2003-2006) 🇯🇵
  • Erasmus Mundus Heritage Scholarship (2013) 🇵🇹
  • Distinguished Alumnus Award, Kakatiya University 🎓
    Dr. Pancharathi’s accolades reflect his contributions to engineering education, research, and sustainable development, both nationally and internationally.

Research Focus 🔬

Dr. Pancharathi’s research focuses on sustainable construction materials, including recycled aggregate concrete, low-cost building materials, and high-performance mortars. He explores structural health monitoringearthquake engineering, and microstructure analysis of concrete. His work also includes repair and rehabilitation of structurescomposite materials, and heritage conservation. He integrates advanced techniques like machine learning and digital image correlation for material optimization and structural assessment. His collaborations with global institutions have advanced knowledge in sustainable infrastructure, making significant contributions to eco-friendly construction practices and resilient infrastructure development.

Publication Top Notes 📚

  1. Performance and Microstructure of Agro Biochar-Based Cement Mortars (2025)
  2. Optimizing Compressive Strength of RCA Concrete Using ML (2024)
  3. Low-Grade Limestone-Based Sustainable Cements (2024)
  4. Deterioration Assessment in Repurposed Concrete (2024)
  5. Machine Learning for Concrete Strength Prediction (2024)
  6. Multi-Recycled Aggregate Concrete Using Particle Packing (2024)
  7. Colour Reference Charts for Concrete Deterioration (2024)
  8. Stress-Strain Model for Self-Curing Concrete (2024)
  9. Image-Based Deterioration Assessment in Concrete (2024)
  10. Carbon Sequestration in Agro Biochar Mortars (2025)

Conclusion 🌟

Dr. Rathish Kumar Pancharathi is a luminary in civil engineering, blending academic excellence, administrative leadership, and groundbreaking research. His contributions to sustainable construction, structural health monitoring, and international collaborations have set new benchmarks in the field. With numerous awards, extensive publications, and a commitment to eco-friendly infrastructure, he continues to inspire and innovate, shaping the future of civil engineering globally.

 

Dr. Yu Wayne Wang – Concrete – Outstanding Scientist Award

Dr. Yu Wayne Wang - Concrete - Outstanding Scientist Award

University of Salford - United Kingdom

EARLY ACADEMIC PURSUITS

Dr. Yu Wayne Wang embarked on his academic journey with a Bachelor's degree in Automotive Engineering from Wuhan University of Technology, China. He then pursued a Master's degree in Engineering Mechanics at Chongqing University, China, before furthering his education with a PhD in Civil Engineering from Aston University, UK. His diverse educational background laid the foundation for his interdisciplinary approach to research and teaching.

PROFESSIONAL ENDEAVORS

Wang's professional career spans various roles in academia, with a focus on teaching and research in civil engineering. From his early years as a Research Fellow at the University of Plymouth, UK, to his current position as an Associate Professor/Reader at the University of Salford, UK, he has demonstrated a commitment to advancing knowledge in construction materials, structural durability, and environmental sustainability Concrete.

CONTRIBUTIONS AND RESEARCH FOCUS on CONCRETE

Dr. Wang's research interests lie in the areas of construction materials, structural durability, and environment. His work encompasses topics such as the hydro-physics of construction materials, unsaturated hydrology, and material-environment interaction. Through his research, he aims to address pressing challenges in infrastructure development and contribute to the advancement of sustainable infrastructure practices.

IMPACT AND INFLUENCE

Wang's research has made significant contributions to the field of civil engineering, with implications for both academia and industry. His expertise in construction materials and structural durability has led to innovative solutions for enhancing the performance and longevity of infrastructure systems. His research findings have been disseminated through peer-reviewed publications, conferences, and collaborative projects, shaping the discourse on sustainable infrastructure development Concrete.

ACADEMIC CITATIONS

Dr. Wang's publications have garnered citations from scholars and researchers worldwide, reflecting the relevance and impact of his work in the academic community. His contributions to the understanding of construction materials and their interaction with the environment have been recognized and cited in leading journals and conferences in civil engineering and related fields.

LEGACY AND FUTURE CONTRIBUTIONS

As a leading figure in the field of civil engineering, Dr. Yu Wayne Wang's legacy lies in his dedication to advancing knowledge and fostering innovation in sustainable infrastructure. His interdisciplinary approach to research and teaching, coupled with his commitment to excellence, positions him as a thought leader and catalyst for positive change in the built environment. His future contributions are expected to further enrich the field of civil engineering, addressing emerging challenges and advancing sustainable infrastructure practices.

NOTABLE PUBLICATION

Experimental study of temperature effect on the mechanical tensile fatigue of hydrated lime modified asphalt concrete and case application for the analysis of climatic effect on constructed pavement.  

Year: 2022
Citation: 02