Modeling High Temperature Materials Behavior for Structural Analysis

Part I: Continuum Mechanics Foundations and Constitutive Models

Nonfiction, Science & Nature, Technology, Material Science, Science, Physics, Mechanics
Cover of the book Modeling High Temperature Materials Behavior for Structural Analysis by Konstantin Naumenko, Holm Altenbach, Springer International Publishing
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Author: Konstantin Naumenko, Holm Altenbach ISBN: 9783319316291
Publisher: Springer International Publishing Publication: May 11, 2016
Imprint: Springer Language: English
Author: Konstantin Naumenko, Holm Altenbach
ISBN: 9783319316291
Publisher: Springer International Publishing
Publication: May 11, 2016
Imprint: Springer
Language: English

This monograph presents approaches to characterize inelastic behavior of materials and structures at high temperature. Starting from experimental observations, it discusses basic features of inelastic phenomena including creep, plasticity, relaxation, low cycle and thermal fatigue.

The authors formulate constitutive equations to describe the inelastic response for the given states of stress and microstructure. They introduce evolution equations to capture hardening, recovery, softening, ageing and damage processes. Principles of continuum mechanics and thermodynamics are presented to provide a framework for the modeling materials behavior with the aim of structural analysis of high-temperature engineering components.

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This monograph presents approaches to characterize inelastic behavior of materials and structures at high temperature. Starting from experimental observations, it discusses basic features of inelastic phenomena including creep, plasticity, relaxation, low cycle and thermal fatigue.

The authors formulate constitutive equations to describe the inelastic response for the given states of stress and microstructure. They introduce evolution equations to capture hardening, recovery, softening, ageing and damage processes. Principles of continuum mechanics and thermodynamics are presented to provide a framework for the modeling materials behavior with the aim of structural analysis of high-temperature engineering components.

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