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Image of Plasticity-Damage Couplings: From Single Crystal to Polycrystalline Materials

Electronic Resource

Plasticity-Damage Couplings: From Single Crystal to Polycrystalline Materials

Cazacu, Oana - Personal Name; Revil-Baudard,Benoit - Personal Name; Chandola, Nitin - Personal Name;

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Offering a well-balanced blend of theory and hands-on applications, this book presents a unified framework for the main dissipative phenomena in metallic materials: plasticity and damage. Based on representation theory for tensor functions and scale-bridging theorems, this framework enables the development of constitutive models that account for the influence of crystallographic structures and deformation mechanisms on the macroscopic behavior. It allows readers to develop a clear understanding of the range of applicability of any given model, as well as its capabilities and limitations, and provides procedures for parameter identification along with key concepts necessary to solve boundary value problems, making it useful to both researchers and engineering practitioners. Although the book focuses on new contributions to modeling anisotropic materials, the review of the foundations of plasticity and models for isotropic materials, completed with detailed mathematical proofs mean that it is self-consistent and accessible to graduate students in engineering mechanics and material sciences.


Availability
Inventory Code Barcode Call Number Location Status
1908002091EB0002797620.112 33 Caz pCentral Library (OPAC)Available
Detail Information
Series Title
Solid Mechanics and Its Applications
Call Number
620.112 33 Caz p
Publisher
Switzerland : Springer Cham., 2018
Collation
XIII, 581p.:Ill
Language
English
ISBN/ISSN
978-3-319-92922-4
Classification
620.112 33
Content Type
Ebook
Media Type
-
Carrier Type
online resource
Edition
1
Subject(s)
Metals--Plastic properties
Specific Detail Info
-
Statement of Responsibility
BRF
Other version/related

No other version available

File Attachment
  • Plasticity-Damage Couplings: From Single Crystal to Polycrystalline Materials
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