This book provides the latest developments in functional and engineering materials for defence applications. It contains a total of 20 book chapters in 2 proposed volumes: Vol. 1. Defence Functional Materials and Vol. 2. Defence Engineering Materials. All the book chapters are authored by leading scientists from the premier institutes, such as DRDO laboratory, DMSRDE, Kanpur, India, and edited by Drs. N Eswara Prasad, RJH Wanhill, and DK Setua. Both the authors and the editors are well known internationally for their seminal works in the Functional and Engineering Materials R&D and S&T. The…mehr
This book provides the latest developments in functional and engineering materials for defence applications. It contains a total of 20 book chapters in 2 proposed volumes: Vol. 1. Defence Functional Materials and Vol. 2. Defence Engineering Materials. All the book chapters are authored by leading scientists from the premier institutes, such as DRDO laboratory, DMSRDE, Kanpur, India, and edited by Drs. N Eswara Prasad, RJH Wanhill, and DK Setua. Both the authors and the editors are well known internationally for their seminal works in the Functional and Engineering Materials R&D and S&T. The principal purpose of this two-volume book is to provide the salient features of materials selection, synthesis, development and qualification for many a classical applications encompassing aero, naval and ground-based defence systems. They would surely act as valuable vade mecums for both active researchers, defence experts, post-graduate students, and faculty members who like to work and contribute to defence forces through research in areas such as defence materials, products, prototypes, sub-systems and systems that need cutting edge technologies and the latest and best materials and materials solutions.
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Dr. N. Eswara Prasad joined DRDO in 1985 after obtaining a B. Tech. and Ph.D. in Metallurgical Engineering from the Indian Institute of Technology, Banaras Hindu University. He retired in September 2022 after serving the Indian Ministry of Defence for more than three decades as an Outstanding Scientist of DRDO. Dr. Prasad has contributed immensely to the development of several defence systems, including fighter aircraft structures, engines, missiles, naval propulsion, and personal protection systems. He has been instrumental in awarding 14 defence production technologies to over 40 Indian industries. Dr. Eswara Prasad is internationally known for his research on fatigue, fracture and life extension behaviour of several aero, structural and functional materials, with over 750 wide-ranging publications; 12 government white papers; 17 international edited books/conference proceedings, including Aluminium - Lithium Alloys: Processing, Properties and Applications and a 2-volume Reference Work Aerospace Materials and Material Technologies. He has been Chairman, President or Member of 10+ national committees and bodies and received 15+ national and international awards and 70+ honours and recognitions. These include fellowships of 6 national and international science and engineering academies/institutions, notably Founder Fellow of the Indian Structural Integrity Society (FInSIS) and Fellow of the Asia Pacific Academy of Sciences (FAPAM). Dr. Russell Wanhill is emeritus Principal Research Scientist, Aerospace Vehicles Division, Royal Netherlands Aerospace Centre (NLR), in the Netherlands. He holds two Doctorates, one from the University of Manchester (1968) and the second from the Delft University of Technology (1994). He joined the NLR in 1970, and since then has investigated fatigue and fracture of all classes of aerospace alloys. He is co-author of the book Fracture Mechanics (1984), which ran into a second edition; co-author with Simon Barter of themonograph Fatigue of Beta Processed and Beta Heat-treated Titanium Alloys (2012); co-author and co-editor for the book Aluminium - Lithium Alloys: Processing, Properties and Applications (2014); co-author and co-editor for the 2-volume series Aerospace Materials and Material Technologies (2017); co-author of the monograph Corrosion and Stress Corrosion Testing of Aerospace Vehicle Structural Alloys (2018); and co-author of the monograph Fatigue Crack growth Failure and Lifing Analyses for Metallic Aircraft Structures and Components (2019). Dr. Dipak Kumar Setua obtained his M.Sc. (Chemistry) in 1981 and Ph.D. (Polymer Science and Rubber Technology) in 1985, both from the Indian Institute of Technology (IIT), Kharagpur, India. Subsequently, he joined as a research scientist and spent more than 3 decades at the Defence Materials and Stores R & D Establishment (DMSRDE), Kanpur, India. Furthermore, Dr. Setua served DMRSRDE and DRDO as a DRDO Fellow until 2022. He spent 2 years (1989-91) at the Institute of Polymer Engineering, University of Akron, Ohio, Akron, USA, as a visiting scientist and remained Director of the Advanced Centre of Research on High Energy Materials (ACRHEM), University of Hyderabad, India, during 2013-14. Some of the of his research include short fibre-rubber composites, polymer blends and compatibility, polymer characterization, magneto-rheological elastomer, and design and development of polymer-based composites and nanocomposites and products for personal protection, aerospace systems and bio-medical applications. Dr. Setua has published more than 100 archival papers, several patents and book chapters. He has also received many prestigious honours and awards.
Inhaltsangabe
Chapter 1: Polymer Matrix Composites for Defence Applications.- Chapter 2: Polymeric Hybrid Composites for Defence Applications.- Chapter 3: Materials and Technologies for Personnel Protection Systems.- Chapter 4: Polymeric Materials for Defence Store Under Extreme Cold Weather Environment.- Chapter 5: Development of Non-Metallic Structural Materials for Defence Systems.- Chapter 6: Defence Protective Textiles.- Chapter 7: Nano Fibrous Coated Web Technologies.- Chapter 8: Technical Textiles for Superhydrophobic and Oleophobic Applications.- Chapter 9: Ultrahigh Temperature Ceramic Components Fabrication and Their (Select) Production Technologies.- Chapter 10: Camouflage and Stealth Materials for Aerospace and Defence Applications.
Chapter 1: Polymer Matrix Composites for Defence Applications.- Chapter 2: Polymeric Hybrid Composites for Defence Applications.- Chapter 3: Materials and Technologies for Personnel Protection Systems.- Chapter 4: Polymeric Materials for Defence Store Under Extreme Cold Weather Environment.- Chapter 5: Development of Non-Metallic Structural Materials for Defence Systems.- Chapter 6: Defence Protective Textiles.- Chapter 7: Nano Fibrous Coated Web Technologies.- Chapter 8: Technical Textiles for Superhydrophobic and Oleophobic Applications.- Chapter 9: Ultrahigh Temperature Ceramic Components Fabrication and Their (Select) Production Technologies.- Chapter 10: Camouflage and Stealth Materials for Aerospace and Defence Applications.
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