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Titlebook: Modeling High Temperature Materials Behavior for Structural Analysis; Part I: Continuum Me Konstantin Naumenko,Holm Altenbach Book 2016 Spr

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书目名称Modeling High Temperature Materials Behavior for Structural Analysis
副标题Part I: Continuum Me
编辑Konstantin Naumenko,Holm Altenbach
视频video
概述Develops methods to simulate and analyze high temperature and inelastic processes of materials and structures.Offers an avenue to the classical and recent modeling of high-temperature mechanics and in
丛书名称Advanced Structured Materials
图书封面Titlebook: Modeling High Temperature Materials Behavior for Structural Analysis; Part I: Continuum Me Konstantin Naumenko,Holm Altenbach Book 2016 Spr
描述.This monograph presentsapproaches to characterize inelastic behavior of materials and structures athigh temperature. Starting from experimental observations, it discusses basicfeatures of inelastic phenomena including creep, plasticity, relaxation, lowcycle and thermal fatigue..The authors formulate constitutive equations to describe the inelastic responsefor the given states of stress and microstructure. They introduce evolutionequations to capture hardening, recovery, softening, ageing and damage processes.Principles of continuum mechanics and thermodynamics are presented to provide aframework for the modeling materials behavior with the aim of structuralanalysis of high-temperature engineering components..
出版日期Book 2016
关键词Creep Mechanics; Creep-Fatigue; Kachanov-Rabotnov Model; Low Cycle Fatigue; Ritz Method; Thermo-Mechanica
版次1
doihttps://doi.org/10.1007/978-3-319-31629-1
isbn_softcover978-3-319-81081-2
isbn_ebook978-3-319-31629-1Series ISSN 1869-8433 Series E-ISSN 1869-8441
issn_series 1869-8433
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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Modeling High Temperature Materials Behavior for Structural AnalysisPart I: Continuum Me
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Konstantin Naumenko,Holm AltenbachDevelops methods to simulate and analyze high temperature and inelastic processes of materials and structures.Offers an avenue to the classical and recent modeling of high-temperature mechanics and in
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