Advanced theories for deformation, damage and failure in materials / Holm Altenbach, Artur Ganczarski, editors.
2023
TA409
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Details
Title
Advanced theories for deformation, damage and failure in materials / Holm Altenbach, Artur Ganczarski, editors.
ISBN
9783031043543 (electronic bk.)
3031043545 (electronic bk.)
9783031043529
3031043529
3031043545 (electronic bk.)
9783031043529
3031043529
Published
Cham : Springer, [2023]
Copyright
©2023
Language
English
Description
1 online resource (x, 280 pages) : illustrations (some color).
Item Number
10.1007/978-3-031-04354-3 doi
Call Number
TA409
Dewey Decimal Classification
620.1/12
Summary
The book introduces advanced theories for deformation, damage, and failure in materials. The overall continuum mechanical framework was marked out and added by creep and damage mechanics of materials at elevated temperatures. The time-dependent and time-independent models of cyclic plasticity for low cycle and thermomechanical fatigue life assessment were specified in a very special manner: instead of three-dimensional statements, only one-dimensional rheological models were discussed. Anisotropic plasticity during non-proportional loading and anisotropy of yield/failure criteria is more and more important in modern applications. It is showing how the limit states of materials can be estimated. In addition, the damage and failure of composite materials demonstrate the possibility to extend continuum mechanics to continuum damage mechanics of composite materials.
Bibliography, etc. Note
Includes bibliographical references.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed September 9, 2022).
Series
Courses and lectures ; no. 605.
Available in Other Form
ADVANCED THEORIES FOR DEFORMATION, DAMAGE AND FAILURE IN MATERIALS.
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Table of Contents
Creep and Damage of Materials at Elevated Temperatures
Anisotropic Plasticity During Non-proportional Loading
Anisotropy of Yield/Failure Criteria - Comparison of Explicit and Implicit Formulations
Time-dependent and Time-independent Models of Cyclic Plasticity for Low-cycle and Thermomechanical Fatigue Life Assessment
Damage and Failure of Composite Materials.
Anisotropic Plasticity During Non-proportional Loading
Anisotropy of Yield/Failure Criteria - Comparison of Explicit and Implicit Formulations
Time-dependent and Time-independent Models of Cyclic Plasticity for Low-cycle and Thermomechanical Fatigue Life Assessment
Damage and Failure of Composite Materials.