Gratis Versand ab 16,99 €. Mehr Infos.
Bookbot

Spatial and Material Forces in Nonlinear Continuum Mechanics

A Dissipation-Consistent Approach

Autor*innen

Parameter

  • 395 Seiten
  • 14 Lesestunden

Mehr zum Buch

The book explores the innovative field of configurational mechanics within the framework of non-linear continuum mechanics, emphasizing the role of configurational forces in material changes. It discusses how these forces relate to spatial and material perspectives, particularly in the context of crack propagation, where the J-integral exemplifies the driving force behind boundary changes. The author argues for a comprehensive understanding of configurational mechanics as a unifying approach to continuum defect mechanics, free from the limitations of traditional methods, and providing a robust computational framework.

Publikation

Buchkauf

Spatial and Material Forces in Nonlinear Continuum Mechanics, Paul Steinmann

Sprache
Erscheinungsdatum
2023
product-detail.submit-box.info.binding
(Paperback)
Wir benachrichtigen dich per E-Mail.

Lieferung

  • Gratis Versand ab 16,99 € in ganz Deutschland! Mehr Infos.

Zahlungsmethoden

Keiner hat bisher bewertet.Abgeben

Titel
Spatial and Material Forces in Nonlinear Continuum Mechanics
Untertitel
A Dissipation-Consistent Approach
Sprache
Englisch
Autor*innen
Paul Steinmann
Erscheinungsdatum
2023
Einband
Paperback
Seitenzahl
395
ISBN13
9783030890728
Reihe
Beschreibung
The book explores the innovative field of configurational mechanics within the framework of non-linear continuum mechanics, emphasizing the role of configurational forces in material changes. It discusses how these forces relate to spatial and material perspectives, particularly in the context of crack propagation, where the J-integral exemplifies the driving force behind boundary changes. The author argues for a comprehensive understanding of configurational mechanics as a unifying approach to continuum defect mechanics, free from the limitations of traditional methods, and providing a robust computational framework.