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2016, ISBN: 3662519232

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Plasticity of Pressure-Sensitive Materials (Engineering Materials)

Classical plasticity theory of metals is independent of the hydrostatic pressure. However if the metal contains voids or pores or if the structure is composed of cells, this classical assumption is no more valid and the influence of the hydrostatic pressure must be incorporated in the constitutive description. Looking at the microlevel, metal plasticity is connected with the uniform planes of atoms organized with long-range order. Planes may slip past each other along their close-packed directions. The result is a permanent change of shape within the crystal and plastic deformation. The presence of dislocations increases the likelihood of planes slipping.

Nowadays, the theory of pressure sensitive plasticity is successfully applied to many other important classes of materials (polymers, concrete, bones etc.) even if the phenomena on the micro-level are different to classical plasticity of metals. The theoretical background of this phenomenological approach based on observations on the macro-level is described in detail in this monograph and applied to a wide range of different important materials in the last part of this book.

Informations détaillées sur le livre - Plasticity of Pressure-Sensitive Materials (Engineering Materials)


EAN (ISBN-13): 9783662519233
ISBN (ISBN-10): 3662519232
Version reliée
Livre de poche
Date de parution: 2016
Editeur: Altenbach, Holm, Öchsner, Andreas, Springer

Livre dans la base de données depuis 2016-09-01T13:40:36+02:00 (Zurich)
Page de détail modifiée en dernier sur 2023-05-03T14:43:40+02:00 (Zurich)
ISBN/EAN: 9783662519233

ISBN - Autres types d'écriture:
3-662-51923-2, 978-3-662-51923-3
Autres types d'écriture et termes associés:
Auteur du livre: altenbach holm, andreas ochsner, andre holm
Titre du livre: plasticity


Données de l'éditeur

Auteur: Holm Altenbach; Andreas Öchsner
Titre: Engineering Materials; Plasticity of Pressure-Sensitive Materials
Editeur: Springer; Springer Berlin
376 Pages
Date de parution: 2016-08-23
Berlin; Heidelberg; DE
Imprimé / Fabriqué en
Langue: Anglais
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
X, 376 p. 191 illus., 66 illus. in color.

BC; Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik; Maschinenbau: Festkörpermechanik; Verstehen; biomaterials; micro-macro-interaction; polymers; porous media; voids; Solid Mechanics; Materials Science; Classical Mechanics; Materialwissenschaft; Klassische Mechanik; BB

Classical plasticity theory of metals is independent of the hydrostatic pressure. However if the metal contains voids or pores or if the structure is composed of cells, this classical assumption is no more valid and the influence of the hydrostatic pressure must be incorporated in the constitutive description. Looking at the microlevel, metal plasticity is connected with the uniform planes of atoms organized with long-range order. Planes may slip past each other along their close-packed directions. The result is a permanent change of shape within the crystal and plastic deformation. The presence of dislocations increases the likelihood of planes slipping.

Nowadays, the theory of pressure sensitive plasticity is successfully applied to many other important classes of materials (polymers, concrete, bones etc.) even if the phenomena on the micro-level are different to classical plasticity of metals. The theoretical background of this phenomenological approach based on observations on the macro-level is described in detail in this monograph and applied to a wide range of different important materials in the last part of this book.

Part I:Experimental Observations.- Part II: Theoretical Foundation.- Summary of Continuum mechanics.- Yield Criteria.- Theory of Plasticity.- Part III: Applications.- Metal Forming.- Powder.- Concrete.- Soil and Rock.- Porous Metals.- Cellular.- Human.- Adhesives and Polymers.- Part IV: Some Mathematics.

Classical plasticity theory of metals is independent of the hydrostatic pressure. However, if the metal contains voids or pores or if the structure is composed of cells, this classical assumption is no more valid and the influence of the hydrostatic pressure must be incorporated in the constitutive description. Looking at the microlevel, metal plasticity is connected with the uniform planes of atoms organized with long-range order. Planes may slip past each other along their close-packed directions. The result is a permanent change of shape within the crystal and plastic deformation. The presence of dislocations increases the likelihood of planes slipping.

Nowadays, the theory of pressure sensitive plasticity is successfully applied to many other important classes of materials (polymers, concrete, bones etc.) even if the phenomena on the micro-level are different to classical plasticity of metals. The theoretical background of this phenomenological approach based on observations on the macro-level is described in detail in this monograph and applied to a wide range of different important materials in the last part of this book.


Summarizes new trends and established methods in the field of pressure-sensitive materials Presents results of 6 leading research groups Offers modeling approaches which are applicable in a wide range of modern engineering Includes supplementary material: sn.pub/extras

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9783642409448 Plasticity of Pressure-Sensitive Materials (Öchsner, Andreas (Herausgeber); Altenbach, Holm (Herausgeber))


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