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IUTAM Symposium on Multiscale Modelling of Fatigue Damage and Fracture in Smart Materials by Meinhard Kuna Paperback | Indigo Chapters

Today, multi-functional materials such as piezoelectric/ferroelectric ceramics, magneto-strictive and shape memory alloys are gaining increasing applications as sensors, actuators or smart composite materials systems for emerging high tech areas. The stable performance and reliability of these smart components under complex service loads is of paramount practical importance. However, most multi-functional materials suffer from various mechanical and/or electro-magnetical degra-dation mechanisms as fatigue, damage and fracture. Therefore, this exciting topic has become a challenge to intensive international research, provoking the interdisciplinary approach between solid mechanics, materials science and physics. This book summarizes the outcome of the above mentioned IUTAM-symposium, assembling contributions by leading scientists in this area. Particularly, the following topics have been addressed: (1) Development of computational methods for coupled electromechanical field analysis, especially extended, adaptive and multi-level finite elements. (2) Constitutive modeling of non-linear smart material behavior with coupled electric, magnetic, thermal and mechanical fields, primarily based on micro-mechanical models. (3) Investigations of fracture and fatigue in piezoelectric and ferroelectric ceramics by means of process zone modeling, phase field simulation and configurational mechanics. (4) Reliability and durability of sensors and actuators under in service loading by alternating mechanical, electrical and thermal fields. (5) Experimental methods to measure fracture strength and to investigate fatigue crack growth in ferroelectric materials under electromechanical loading. (6) New ferroelectric materials, compounds and composites with enhanced strain capabilities.

Informations détaillées sur le livre - IUTAM Symposium on Multiscale Modelling of Fatigue Damage and Fracture in Smart Materials by Meinhard Kuna Paperback | Indigo Chapters


EAN (ISBN-13): 9789400734333
ISBN (ISBN-10): 9400734336
Version reliée
Livre de poche
Date de parution: 2013
Editeur: Meinhard Kuna

Livre dans la base de données depuis 2013-01-07T11:00:54+01:00 (Paris)
Page de détail modifiée en dernier sur 2023-11-19T09:50:56+01:00 (Paris)
ISBN/EAN: 9400734336

ISBN - Autres types d'écriture:
94-007-3433-6, 978-94-007-3433-3
Autres types d'écriture et termes associés:
Auteur du livre: meinhard kuna, ricoeur, rico, meinhard andreas
Titre du livre: modelling material damage, fatigue materials, fracture fatigue, freiberg, multiscale modelling damage and fracture, ufo symposium, meinhard


Données de l'éditeur

Auteur: Meinhard Kuna; Andreas Ricoeur
Titre: IUTAM Bookseries; IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials - Proceedings of the IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials, held in Freiberg, Germany, September 1-4, 2009
Editeur: Springer; Springer Netherland
296 Pages
Date de parution: 2013-01-02
Dordrecht; NL
Imprimé / Fabriqué en
Langue: Anglais
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
POD
XXII, 296 p.

BC; Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik; Maschinenbau: Festkörpermechanik; Verstehen; IUTAM; condensed matter; damage; fatigue; fracture; multiscale modeling; sensor; smart materials; quality control, reliability, safety and risk; Solid Mechanics; Mathematical Modeling and Industrial Mathematics; Security Science and Technology; Characterization and Analytical Technique; Mathematische Modellierung; Mathematik für Ingenieure; Sicherheitssysteme und Brandmeldeanlagen; Werkstoffprüfung; BB; EA

Today, multi-functional materials such as piezoelectric/ferroelectric ceramics, magneto-strictive and shape memory alloys are gaining increasing applications as sensors, actuators or smart composite materials systems for emerging high tech areas. The stable performance and reliability of these smart components under complex service loads is of paramount practical importance. However, most multi-functional materials suffer from various mechanical and/or electro¬magnetical degra¬dation mechanisms as fatigue, damage and fracture. Therefore, this exciting topic has become a challenge to intensive international research, provoking the interdisciplinary approach between solid mechanics, materials science and physics. This book summarizes the outcome of the above mentioned IUTAM-symposium, assembling contributions by leading scientists in this area. Particularly, the following topics have been addressed: (1) Development of computational methods for coupled electromechanical field analysis, especially extended, adaptive and multi-level finite elements. (2) Constitutive modeling of non-linear smart material behavior with coupled electric, magnetic, thermal and mechanical fields, primarily based on micro-mechanical models. (3) Investigations of fracture and fatigue in piezoelectric and ferroelectric ceramics by means of process zone modeling, phase field simulation and configurational mechanics. (4) Reliability and durability of sensors and actuators under in service loading by alternating mechanical, electrical and thermal fields. (5) Experimental methods to measure fracture strength and to investigate fatigue crack growth in ferroelectric materials under electromechanical loading. (6) New ferroelectric materials, compounds and composites with enhanced strain capabilities.
IUTAM Symposia represents the state of the art in their topic and set the standard for the next 3-5 years Includes supplementary material: sn.pub/extras

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9789048198863 IUTAM Symposium on Multiscale Modelling of Fatigue Damage and Fracture in Smart Materials by Meinhard Kuna Hardcover | Indigo Chapters (Kuna, Meinhard Ricoeur, Andreas)


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