Creep in Structures VI

Lieferzeit: Lieferbar innerhalb 14 Tagen

192,59 

IUTAM Symposium Proceedings, Advanced Structured Materials 194

ISBN: 3031390695
ISBN 13: 9783031390692
Herausgeber: Holm Altenbach/Konstantin Naumenko
Verlag: Springer Verlag GmbH
Umfang: xx, 334 S., 41 s/w Illustr., 143 farbige Illustr., 334 p. 184 illus., 143 illus. in color.
Erscheinungsdatum: 05.08.2023
Auflage: 1/2024
Produktform: Gebunden/Hardback
Einband: Gebunden

This book offers a current state of the art in analysis and modeling of creep phenomena with applications to the structural mechanics. It presents the some presentations from the IUTAM-Symposium series „Creep in Structures“, which held in Magdeburg (Germany) in September 2023, and it discusses many advances and new results in the field. These are for example: interlinks of mechanics with materials science in multi-scale analysis of deformation and damage mechanisms over a wide range of stresses and temperature; development and analysis of new alloys for (ultra)high-temperature applications; formulation and calibration of advanced constitutive models of inelastic behavior under transient loading and temperature conditions; development of efficient procedures and machine learning techniques for identification of material parameters in advanced constitutive laws; introduction of gradient-enhanced and non-local theories to account for damage and fracture processes; and application of new experimental methods, such as digital image correlation, for the analysis of inelastic deformation under multi-axial stress state.

Artikelnummer: 9952284 Kategorie:

Beschreibung

This book offers a current state of the art in analysis and modeling of creep phenomena with applications to the structural mechanics. It presents the some presentations from the IUTAM-Symposium series "Creep in Structures", which held in Magdeburg (Germany) in September 2023, and it discusses many advances and new results in the field. These are for example: interlinks of mechanics with materials science in multi-scale analysis of deformation and damage mechanisms over a wide range of stresses and temperature;  development and analysis of new alloys for (ultra)high-temperature applications; formulation and calibration of advanced constitutive models of inelastic behavior under transient loading and temperature conditions; development of efficient procedures and machine learning techniques for identification of material parameters in advanced constitutive laws; introduction of gradient-enhanced and non-local theories to account for damage and fracture processes; and applicationof new experimental methods, such as digital image correlation, for the analysis of inelastic deformation under multi-axial stress state.

Herstellerkennzeichnung:


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E-Mail: juergen.hartmann@springer.com

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