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Fracture Mechanics With an Introduction to Micromechanics - Thomas Seelig, Dietmar Gross
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Fracture Mechanics With an Introduction to Micromechanics - gebonden uitgave, pocketboek

2017, ISBN: 9783319710891

Gebunden, 376 Seiten, 241mm x 160mm x 26mm, Sprache(n): eng Self-contained and well illustratedComplete and comprehensive derivation of mechanical/mathematical results with emphasis on is… Meer...

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Fracture Mechanics von E. Gdoutos (Third Edition 2020) 978-3030350970 - Thomas Seelig
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Fracture Mechanics von E. Gdoutos (Third Edition 2020) 978-3030350970 - gebonden uitgave, pocketboek

2017, ISBN: 9783319710891

Zustand: Neu / new. Fracture Mechanics von E. Gdoutos (Third Edition 2020). Zustand: Neu / newThis book discusses the basic principles and traditional applications of fracture mechanics, … Meer...

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Fracture Mechanics / With an Introduction to Micromechanics / Thomas Seelig (u. a.) / Buch / Mechanical Engineering Series / HC runder Rücken kaschiert / XV / Englisch / 2017 / EAN 9783319710891 - Seelig, Thomas
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Seelig, Thomas:
Fracture Mechanics / With an Introduction to Micromechanics / Thomas Seelig (u. a.) / Buch / Mechanical Engineering Series / HC runder Rücken kaschiert / XV / Englisch / 2017 / EAN 9783319710891 - gebonden uitgave, pocketboek

2017

ISBN: 9783319710891

[ED: Gebunden], [PU: Springer International Publishing], - self-contained and well illustrated - complete and comprehensive derivation of mechanical/mathematical results with enphasis on … Meer...

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Fracture Mechanics: With an Introduction to Micromechanics (Mechanical Engineering Series) - Gross
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Fracture Mechanics: With an Introduction to Micromechanics (Mechanical Engineering Series) - gebonden uitgave, pocketboek

2017, ISBN: 9783319710891

Springer, Gebundene Ausgabe, Auflage: 3rd ed. 2018, 376 Seiten, Publiziert: 2017-12-07T00:00:01Z, Produktgruppe: Buch, Hersteller-Nr.: 30304365, 0.73 kg, Verkaufsrang: 3296621, Maschinenb… Meer...

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Fracture Mechanics With an Introduction to Micromechanics - Seelig, Thomas; Gross, Dietmar
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Seelig, Thomas; Gross, Dietmar:
Fracture Mechanics With an Introduction to Micromechanics - gebonden uitgave, pocketboek

2017, ISBN: 3319710893

3rd ed. 2018 Gebundene Ausgabe Ingenieurwissenschaft - Ingenieurwissenschaftler, Körper (physikalisch) / Festkörper, Maschinenbau, Materialprüfung, Mathematik / Statistik, Mechanik, Sto… Meer...

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Fracture Mechanics: With an Introduction to Micromechanics (Mechanical Engineering Series)

- self-contained and well illustrated

- complete and comprehensive derivation of mechanical/mathematical results with enphasis on issues of practical importance

- combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage

- mechanically and mathematically clear and complete derivations of results

Gedetalleerde informatie over het boek. - Fracture Mechanics: With an Introduction to Micromechanics (Mechanical Engineering Series)


EAN (ISBN-13): 9783319710891
ISBN (ISBN-10): 3319710893
Gebonden uitgave
pocket book
Verschijningsjaar: 2018
Uitgever: Springer

Boek bevindt zich in het datenbestand sinds 2017-11-11T13:36:06+01:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2024-02-16T14:24:26+01:00 (Amsterdam)
ISBN/EAN: 9783319710891

ISBN - alternatieve schrijfwijzen:
3-319-71089-3, 978-3-319-71089-1
alternatieve schrijfwijzen en verwante zoekwoorden:
Auteur van het boek: gross, seel, seelig, gdoutos, thomas groß
Titel van het boek: fracture mechanics, frac, engineering mechanics


Gegevens van de uitgever

Auteur: Dietmar Gross; Thomas Seelig
Titel: Mechanical Engineering Series; Fracture Mechanics - With an Introduction to Micromechanics
Uitgeverij: Springer; Springer International Publishing
358 Bladzijden
Verschijningsjaar: 2017-12-07
Cham; CH
Gedrukt / Gemaakt in
Taal: Engels
128,39 € (DE)
131,99 € (AT)
142,00 CHF (CH)
POD
XV, 358 p. 208 illus.

BB; Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik; Maschinenbau: Festkörpermechanik; Verstehen; Creep Fracture; Damage Mechanics; Elastic-Plastic Fracture Mechanics; Failure hypothesis; Linear Fracture Mechanics; Probabilistic Fracture Mechanics; Stress; Thin Films; fracture mechanics textbook; Solid Mechanics; Characterization and Analytical Technique; Werkstoffprüfung; BC; EA

Concerned with the fundamental concepts and methods of fracture mechanics and micromechanics, this textbook primarily focuses on the mechanical description of fracture process. However, material specific aspects are also discussed. The presentation of continuum mechanical and phenomenological foundations is followed by an introduction into classical failure hypotheses. A major part of the book is devoted to linear elastic and elastic-plastic fracture mechanics. Further subjects are creep fracture, dynamic fracture mechanics, damage mechanics, probabilistic fracture mechanics, failure of thin films and fracture of piezoelectric materials. The book also contains an extensive introduction into micromechanics. 

The third edition is supplemented with various extensions, particularly with regard to the numerical treatment of fracture mechanical problems. Self-contained, well-illustrated and with further reading suggestions, this text serves as a graduate-level text and reference.

Elements of solid mechanics.- Classical failure hypotheses.- Micro and macro phenomena of fracture.- Linear fracture mechanics.- Elastic-plastic fracture mechanics.- Creep fracture.- Dynamic fracture mechanics.- Micromechanics and homogenization.- Damage mechanics.- Probabilistic fracture mechanics.

studied Applied Mechanics and received his Engineering Diploma and Doctor of Engineering degree at the University of Rostock. He was Research Associate at the University of Stuttgart and since 1976 he is Professor of Mechanics at the Technische Universität Darmstadt. His research interests are mainly focused on modern solid mechanics including fracture processes on the macro and micro scale and the modeling of advanced materials.

studied Mechanics and received his PhD at TU Darmstadt. He spent some years as a researcher at the Fraunhofer Institute for Mechanics of Materials in Freiburg and since 2009 is Professor of Mechanics at Karlsruhe University. His research field is solid mechanics with an emphasis on fracture and micromechanics. His work has been concerned with the numerical simulation of dynamic fracture processes and currently focuses on the deformation and failure behaviour of polymer blends and composites.

Dietmar Gross  Thomas Seelig 

Concerned with the fundamental concepts and methods of fracture mechanics and micromechanics, this textbook primarily focuses on the mechanical description of fracture process. However, material specific aspects are also discussed. The presentation of continuum mechanical and phenomenological foundations is followed by an introduction into classical failure hypotheses. A major part of the book is devoted to linear elastic and elastic-plastic fracture mechanics. Further subjects are creep fracture, dynamic fracture mechanics, damage mechanics, probabilistic fracture mechanics, failure of thin films and fracture of piezoelectric materials. The book also contains an extensive introduction into micromechanics. 

The third edition is supplemented with various extensions, particularly with regard to the numerical treatment of fracture mechanical problems. Self-contained, well-illustrated and with further reading suggestions, this text serves as a graduate-level text and reference.

Self-contained and well illustrated

Complete and comprehensive derivation of mechanical/mathematical results with emphasis on issues of practical importance

Combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage Mechanically and mathematically clear and complete derivations of results


Self-contained and well illustrated Complete and comprehensive derivation of mechanical/mathematical results with emphasis on issues of practical importance Combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage Mechanically and mathematically clear and complete derivations of results Includes supplementary material: sn.pub/extras

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