Gutscheinbedingungen

**Gültig bis 14.09.2026 auf Spielzeug, Schreibwaren, Filme, Geschenke & Trends, Musik, tolino eReader & Zubehör, Hörbücher, nicht preisgebundene Bücher und Kalender in der Thalia App. Einzelne Artikel können ausgeschlossen sein. Aufgrund der Buchpreisbindung sind deutschsprachige Bücher und eBooks ausgenommen. Zusätzlich ausgenommen sind Abos & Flatrates, Games, Geschenkkarten/-boxen, Shelfies, Software, Zeitschriften sowie einzelne Artikel von tonies®. Pro Einkauf einmal einlösbar. Nur gültig mit im Onlineshop hinterlegter Bonuscard. Click & Collect nur bei Onlinevorabzahlung möglich. Keine Barauszahlung. Nicht kombinierbar mit anderen Aktionen und Gutscheinen. Gutschein wird auf max. 500€ Bestellwert angerechnet. Nicht gültig für Versandkosten und Services.

Produktbild: Computational Mechanics of Nanocomposites
Vorbesteller Neu

Computational Mechanics of Nanocomposites Multi-Scale Failure Modelling

279,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.04.2027

Herausgeber

Gaurav Arora + weitere

Verlag

Elsevier

Seitenzahl

440

Maße (L/B)

22,9/15,2 cm

Sprache

Englisch

ISBN

978-0-443-45215-4

Beschreibung

Portrait

Dr. Gaurav Arora is currently working as Research Scientist at King Mongkut’s University of Technology North Bangkok, Thailand. Dr. Arora's journey into academia began with a profound passion for understanding the intricacies of mechanical systems and materials. After completing his B.Tech. in Mechanical Engineering (2010) from Chandigarh Engineering College, Dr. Arora furthered his academic pursuits at the prestigious Indian Institute of Technology Roorkee, where he earned his M.Tech. degree (2012). It was during this time that his fascination with nanomaterials and their applications in engineering took root, laying the groundwork for his future research endeavors. Continuing his pursuit of knowledge, Dr. Arora obtained his Ph.D. in Mechanical Engineering (2021) from the Indian Institute of Technology Mandi, where he conducted groundbreaking work on the multi-scale thermal and thermo-mechanical analysis of polymer nanocomposites. His research focused on manufacturing, characterization, properties evaluation and multi-scale material modelling, exploring the potential of these materials in various industrial applications. Presently, he has 325 citations with an h-index of 11, according to Google Scholar. He has published a total of 24 articles, book chapters, and conference papers, along with one edited book. He has also served as a reviewer for Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, High Performance Polymers, Polymer Composites, and many other journals

Dr. Manoj Kumar Singh is a Research Scientist at King Mongkut’s University of Technology North Bangkok. He has considerable experience in polymer composite manufacturing and its various characterizations. Currently, he is acting as Associate Editor of Materials Science Section of Heliyon Journal and Guest Editor of International Journal on Interactive Design and Manufacturing, Springer. He is also the Section Editor of Polymer Processing and Engineering in Journal of Polymer Science and Engineering, EnPress. His research interests include plastic waste recycling, pyrolysis, polymer and polymer composites, sustainable manufacturing, additive manufacturing, flame-retardants, mechanical and thermal characterizations, tribology of polymer materials, machining of materials, and the degradability of polymer composites.

Dr. Himanshu Pathak is currently working as an Associate Professor in the School of Mechanical and Materials Engineering at the Indian Institute of Technology Mandi, located in Himachal Pradesh, India. He has received the B.E. (Mechanical Engineering) in the year 2009 from Nagpur University (Maharashtra, India) and Ph.D. (Mechanical Engineering) in 2015 from Indian Institute of Technology Patna (Bihar, India). His research focuses on advancing knowledge and technologies in fracture-fatigue mechanics, polymer-based composite materials, and multi-physics computational modelling. He is also contributed in developing mesh-independent computational methodologies to model crack growth, an essential area for predicting material behavior under extreme conditions. His research group has been actively involved in computational modelling and the experimental validation of polymer-based composites to improve their performance in fields like aerospace, defense, and biomedical applications. His work encompasses cutting-edge areas such as fatigue life prediction, fracture toughness enhancement, and multi-functional composite design, which have significant applications in structural materials and components exposed to harsh environments. His scholarly contributions include one granted patent, two edited books, and 16 chapters in internationally recognized volumes.

Dr. Sanjay Mavinkere Rangappa is a Chief Scientist and an Associate Professor at King Mongkut’s University of Technology North Bangkok (KMUTNB), Bangkok, Thailand. He also serves as an Advisor within the President' s Office for University Promotion and Development towards International goals. Dr. Rangappa is the Executive Editor of Book Cluster: Fiber Science and Fibrous Composite Materials ( Elsevier), a former Associate Editor of Heliyon (Materials Science), and an Associate Editor of Frontier Materials Journals. He acts as a Board Member and Editor for various international journals in materials science and composites. He has reviewed over 250 international journals, including for Nature, Elsevier, Springer, and Wiley, as well as book proposals and conference submissions. He has published more than 425 articles in top- tier peer- reviewed journals indexed by SCI/Scopus, 13 editorial issues, 100 book chapters, and 70 books as an Editor with leading publishers such as Elsevier, Springer, Taylor & Francis, and Wiley. Additionally, he authored 3 books published by Elsevier and has presented research at numerous national and international conferences. Over 25 of his articles are highly cited in journals like the Journal of Cleaner Production and Carbohydrate Polymers. Dr. Rangappa is the lead editor for several special issues and has a Google Scholar citation count exceeding 39, 000, with an H- index of 100 and An i 100- Index of 475. He holds 1 US Patent, 11 UK Design Patents, 1 Thailand Patent, and 5 Indian patents. He has delivered keynote and invited talks globally, including Russia, South Africa, Malaysia, and India. Currently, he is an Academic Visitor at The University of Portsmouth, UK (2024), with upcoming visiting positions at various Malaysian and Indonesian universities from 2024 to 2027. His research focuses on Natural fiber composites, Polymer Composites, and Advanced Material Technology. He received the ‘Top Peer Reviewer 2019’ award from Publons, and the KMUTNB ‘Outstanding Young Researcher’ (2020) and' Outstanding Researcher’ (2021) awards. Recognized as one of the top 1% most- cited scientists by Stanford University (2019-2025), he ranks 5th in Thailand overall and 2nd In the Polymers category for 2023. He is also listed among the ‘Top 100 Scientists’ in Thailand by AD Scientific Index.

Prof. Dr.-Ing. habil. Suchart Siengchin is a former President of King Mongkut’s University of Technology North Bangkok and currently serves as the Director of TechnoPark at the same university. He earned his Dipl.-Ing. in Mechanical Engineering from the University of Applied Sciences Giessen/Friedberg, Germany in 1999, followed by an M.Sc. in Polymer Technology from the University of Applied Sciences Aalen in 2002, and another M.Sc. in Material Science from Erlangen-Nürnberg University in 2004. He obtained his Doctor of Philosophy in Engineering (Dr.-Ing.) from the Institute for Composite Materials at the University of Kaiserslautern in 2008, including postdoctoral research at Kaiserslautern University and Purdue University's School of Materials Engineering. In 2016, he received his habilitation from Chemnitz University in Saxony, Germany. In 2024, he was honored as an Honorary Fellow by RWTH Aachen University. He has also served as a Lecturer in Production and Material Engineering at the Sirindhorn International Thai-German Graduate School of Engineering, KMUTNB, and has been a full Professor and President of KMUTNB. He received the Outstanding Researcher Award in 2010, 2012, and 2013 at KMUTNB. His research focuses on Polymer Processing and Composite Materials. He is the Editor-in-Chief of the journal Applied Science and Engineering Progress, a Q1 indexed journal on Scopus, and has authored over 600 peer-reviewed journal articles, 15 editorial contributions, more than 100 book chapters, one authored book, and over 50 edited books. He has presented at more than 70 international and national conferences related to Materials Science and Engineering. Recognized as one of the world’s top 2% scientists by Stanford University for 2021- 2022, he received the National Excellence Researcher Award (Engineering and Research Industry) from Thailand's National Research Council in 2021, and has been listed as a Highly Cited Researcher in 2025 by Clarivate.

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.04.2027

Herausgeber

Verlag

Elsevier

Seitenzahl

440

Maße (L/B)

22,9/15,2 cm

Sprache

Englisch

ISBN

978-0-443-45215-4

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

  • Produktbild: Computational Mechanics of Nanocomposites
  • 1. Introduction to Nano-filler Composites and Multi-scale Failure Modelling
    2. Fundamentals of Nano-filler Composite Mechanics
    3. Multi-scale Modelling of Deformation and Fracture in Nano-filler Composites
    4. Continuum Damage Mechanics for Modelling Progressive Damage and Failure Behaviour of Nano-filler Composites
    5. Phase-Field Method for Fracture Analysis and Crack Growth in Nano-filler Composites
    6. Cohesive Zone Modelling for Interface Failure in Nano-filler Composites
    7. Damage and Fracture Modelling of Nano-filler Composites using Peri dynamics
    8. Discrete Element Method for Material Damage Evolution and Fracture in Nano-filler Composites
    9. Failure Response of Nano-filler Composites Under Dynamic Loading
    10. Adaptive Multi-scale Computational Modelling of Nano-filler Composites
    11. Homogenization Techniques for Effective Property Estimation of Nano-filler Composites
    12. Thermo-mechanical Properties of Nano-filler Composites Across Scales
    13. Data-driven Approaches for Nano-filler Composite Modelling
    14. Computational Tools for Modelling and Simulation: Case Studies
    15. Challenges and Future Directions in Multi-scale Failure Modelling