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E-grāmata: High Entropy Alloys: A Machine-Generated Literature Overview

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  • Formāts: EPUB+DRM
  • Izdošanas datums: 30-Sep-2024
  • Izdevniecība: Springer Verlag, Singapore
  • Valoda: eng
  • ISBN-13: 9789819971732
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  • Formāts: EPUB+DRM
  • Izdošanas datums: 30-Sep-2024
  • Izdevniecība: Springer Verlag, Singapore
  • Valoda: eng
  • ISBN-13: 9789819971732
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This book presents the result of an innovative challenge, to create a systematic literature overview driven by machine-generated content. Questions and related keywords were prepared for the machine to query, discover, collate and structure by Artificial Intelligence (AI) clustering. The AI-based approach seemed especially suitable to provide an innovative perspective as the topics are indeed both complex, interdisciplinary and multidisciplinary, for example, climate, planetary and evolution sciences. Springer Nature has published much on these topics in its journals over the years, so the challenge was for the machine to identify the most relevant content and present it in a structured way that the reader would find useful. The automatically generated literature summaries in this book are intended as a springboard to further discoverability. They are particularly useful to readers with limited time, looking to learn more about the subject quickly and especially if they are new to the topics. Springer Nature seeks to support anyone who needs a fast and effective start in their content discovery journey, from the undergraduate student exploring interdisciplinary content to Master- or PhD-thesis developing research questions, to the practitioner seeking support materials, this book can serve as an inspiration, to name a few examples. 

It is important to us as a publisher to make the advances in technology easily accessible to our authors and find new ways of AI-based author services that allow human-machine interaction to generate readable, usable, collated, research content.

1. Introduction.-
2. Fundamentals of High Entropy Alloys.-
3. Design and Synthesis of High Entropy Alloys.- 3.1. Computational based approaches of HEA Design.- 3.2. AI and ML in the design of HEAs.- 3.3. Fabrication with Casting.- 3.4. Additively Manufactured HEA.-
4. Microstructure and mechanical properties of High Entropy Alloys.- 4.1. CoCrFeMnNi High Entropy Alloy.- 4.2. AlXCoCrFeNi system High Entropy Alloys-ok.- 4.3. Eutectic High Entropy Alloys.- 4.4. Metastable/transformative High Entropy Alloys.- 4.5. Refractory High Entropy Alloys.- 4.6. Light weight High Entropy Alloys.-
5. Fatigue/Fracture properties of High Entropy Alloys.-
6. Creep and super-plastic deformation in High Entropy Alloys.-
7. Welding/Joining of High Entropy Alloys.-
8. Corrosion behavior of High Entropy Alloys.-
9. High Entropy Alloys as Functional Materials.

Dr. Saurabh S. Nene is currently working as an Associate Professor at Department of Metallurgical and Materials Engineering (MME), IIT Jodhpur from June 2023. His academic journey started at College of Engineering, Pune (COEP) where he finished his B.Tech in Metallurgical Engineering (2010) followed by completing M.Tech in Materials Science from IIT Bombay in 2012. He started his PhD immediately in 2012 under a joint venture of IIT Bombay, India and Monash University, Australia and finished it in 3.5 years (2016). He subsequently moved to Centre for Friction Stir Processing (CFSP), University of North Texas (UNT) in March 2017 as Post-Doctoral Research Associate and subsequently joined Dept. MME, IIT Jodhpur in Aug, 2020 as Assistant Professor.