Finite Element Analysis of Polymers and Composites -

Finite Element Analysis of Polymers and Composites

Buch | Softcover
820 Seiten
2024
Woodhead Publishing (Verlag)
978-0-443-14087-7 (ISBN)
205,75 inkl. MwSt
Finite Element Analysis of Polymers and its Composites offers up-to-date and significant findings on the finite element analysis of polymers and its composite materials. It is important to point out that to date there are no books that have been published on this concept. Thus, academicians, researchers, scientists, engineers, and students in the similar field will benefit from this highly applications-oriented book that summarizes the experimental, mathematical, and numerical analysis of polymers and composite materials through the finite element method. The book provides detailed and comprehensive information on mechanical properties, fatigue and creep behavior, thermal behavior, vibrational analysis, testing methods, and their modeling techniques. In addition, the book lists the main industrial sectors in which polymers and composite materials simulation is used, and their gains from it, including aeronautics, medical, aerospace, automotive, naval, energy, civil, sports, manufacturing, and even electronics.

Dr. Sathish Kumar Palaniappan is currently working as a post-doctoral researcher at King Mongkut's University of Technology,?North Bangkok, Thailand. He finished his bachelor’s degree in Engineering (Mechanical stream) at University College of Engineering Villupuram, Tamil Nadu, India, in 2012. He received his Master of Engineering from Kongu Engineering College in Perundurai, Tamil Nadu, India. He also finished his PhD studies in the Department of Mining Engineering, Indian Institute of Technology (IIT) Kharagpur, West Bengal, India in 2021. He worked as Research Associate in the Ground Stability Research Laboratory of Mining Engineering Department, Indian Institute of Technology (IIT) Kharagpur, West Bengal, India, and worked as an Assistant Professor in the Department of Manufacturing, SIMATS University, Tamil Nadu, India. His research interests include polymer nanocomposites/composites; polymer blends and biomaterials; mechanical behavior of materials; cutting bits and surface modifications. He has published more than 64 international/national research papers and 32 book chapters with reputed publishers. He also acts as a reviewer for more than 15 international journals. Dr. Rajeshkumar Lakshminarasimhan is currently working as a Professor at Alliance University, Bengaluru, India. His research areas of interest include Polymer biocomposites, biofibers and bio fillers, testing and characterization of fibers and composites. Dr. Sanjay Mavinkere Rangappa, is currently working as a Principal Research Scientist/Associate Professor and also 'Advisor within the office of the President for University Promotion and Development towards International goals' at King Mongkut’s University of Technology North Bangkok, Bangkok, Thailand. He received the B.Eng (Mechanical Engineering) in the year 2010, M.Tech (Computational Analysis in Mechanical Sciences) in the year 2013, Ph.D (Faculty of Mechanical Engineering Science) from Visvesvaraya Technological University, Belagavi, India in the year 2018 and Post Doctorate from King Mongkut's University of Technology North Bangkok, Thailand, in the year 2019. He is a Life Member of Indian Society for Technical Education (ISTE) and an Associate Member of Institute of Engineers (India). He is an Associate Editor of Heliyon Elsevier (Materials Science) and Frontier Materials Journals. Also acting as a Board Member of various international journals in the fields of materials science and composites. He is a reviewer for more than 180 International Journals also a reviewer for book proposals, and international conferences. In addition, he has published more than 300 articles in high-quality international peer-reviewed journals indexed by SCI/Scopus, 10 editorial corners, 70 book chapters, one book, 37 books as an Editor (Published by lead publishers such as Elsevier, Springer, Taylor & Francis, Wiley), and also presented research papers at national/international conferences. Engineering, Thailand). Prof. Dr.-Ing. habil. Suchart Siengchin is President of King Mongkut’s University of Technology North Bangkok. He has received his Dipl.-Ing. in Mechanical Engineering from University of Applied Sciences Giessen/Friedberg, Hessen, Germany in 1999, M.Sc. in Polymer Technology from University of Applied Sciences Aalen, Baden-Wuerttemberg, Germany in 2002, M.Sc. in Material Science at the Erlangen-Nürnberg University, Bayern, Germany in 2004, Doctor of Philosophy in Engineering (Dr.-Ing.) from Institute for Composite Materials, University of Kaiserslautern, Rheinland-Pfalz, Germany in 2008 and Postdoctoral Research from Kaiserslautern University and School of Materials Engineering, Purdue University, USA. In 2016 he received the habilitation at the Chemnitz University in Sachen, Germany. He worked as a Lecturer for Production and Material Engineering Department at The Sirindhorn International Thai-German Graduate School of Engineering (TGGS), KMUTNB. He has been full Professor at KMUTNB and became the President of KMUTNB. He won the Outstanding Researcher Award in 2010, 2012 and 2013 at KMUTNB.

1. Introduction to the finite element analysis of polymer composites
2. Polymer composites: types, processes, properties, and applications
3. Numerical analysis of static and dynamic response of polymer composites
4. Overview of impact performance of polymer composites using finite element analysis
5. Finite element analysis for compression behavior of polymer composites
6. Overview on thermal deformation studies of polymer composites using finite element method
7. Overview on characterization of shear properties using finite element analysis for polymer composites
8. Investigation of fracture toughness analysis of polymer composites using finite element analysis
9. Free and forced vibration analyses of glass fiber2reinforced polymer beam under nonuniform thermal environment
10. Configurational force-based creep crack growth modeling using finite element analysis in polymer composites
11. Estimation of the effective mechanical properties of unidirectional fiber reinforced composites using machine learning
12. Active vibration control of laminated carbon nanotube-based polymer composite plates using finite element analysis
13. Nonlinear frequency prediction of agglomerated CNT/porous polymer nanocomposite plates with magnetoelectric facings via hybrid finite element method - artificial neural network approach
14. Finite element analysis of seawater effect on mechanical strength of polymer composites
15. Finite element analysis of the slotted shear test specimen of natural fiber-reinforced composites
16. Influence of stacking sequence on impact damage resistance and residual strength for composite cylinder structures using FEM tool
17. Thermal conductivity of fiber reinforced composites: finite element approach
18. Ballistic impact analysis of multilayered armour system using finite element analysis
19. Overview of finite element analysis of polymer composites using ABAQUS
20. Study of temperature-stimulated polymer composites using ABAQUS under transverse loading
21. Finite element analysis of thermoset polymers and their composites: comparison with experimental results
22. Finite element analysis of thermoplastic polymers: comparison with experimental results
23. Finite element analysis of polymeric materials in day-to-day applications
24. Finite element analysis of polymeric materials for industrial applications
25. Carbon nanotubebased nanocomposite for effective electromagnetic interference shielding in aerospace applications: A finite element study
26. Finite element analysis of wood polymer composites
27. Finite element analysis of the polymer composites for shape memory applications
28. Application of the finite element method in the analysis of polymer composites
29. Applications of nonlinear failure theories in the finite element simulations of fiber-reinforced polymer matrix composite performance
30. Case studies on finite element method for performance analysis of polymer-based gear applications
31. Finite element based empirical numerical hybrid approach for determining the thermo-mechanical properties of natural fibers

Erscheinungsdatum
Reihe/Serie Woodhead Publishing in Materials
Sprache englisch
Maße 152 x 229 mm
Gewicht 1000 g
Themenwelt Technik Maschinenbau
ISBN-10 0-443-14087-1 / 0443140871
ISBN-13 978-0-443-14087-7 / 9780443140877
Zustand Neuware
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