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Modeling High Temperature Materials ...
~
Naumenko, Konstantin.
Modeling High Temperature Materials Behavior for Structural Analysis = Part II. Solution Procedures and Structural Analysis Examples /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Modeling High Temperature Materials Behavior for Structural Analysis/ by Konstantin Naumenko, Holm Altenbach.
Reminder of title:
Part II. Solution Procedures and Structural Analysis Examples /
Author:
Naumenko, Konstantin.
other author:
Altenbach, Holm.
Description:
XVI, 210 p. 1 illus.online resource. :
Contained By:
Springer Nature eBook
Subject:
Mechanics. -
Online resource:
https://doi.org/10.1007/978-3-030-20381-8
ISBN:
9783030203818
Modeling High Temperature Materials Behavior for Structural Analysis = Part II. Solution Procedures and Structural Analysis Examples /
Naumenko, Konstantin.
Modeling High Temperature Materials Behavior for Structural Analysis
Part II. Solution Procedures and Structural Analysis Examples /[electronic resource] :by Konstantin Naumenko, Holm Altenbach. - 1st ed. 2019. - XVI, 210 p. 1 illus.online resource. - Advanced Structured Materials,1121869-8433 ;. - Advanced Structured Materials,74.
Introduction -- Examples of Constitutive Equations for Various Materials -- Inelasticity in Structures.
This second part of the work on creep modeling offers readers essential guidance on practical computational simulation and analysis. Drawing on constitutive equations for creep in structural materials under multi-axial stress states, it applies these equations, which are developed in detail in part 1 of the work, to a diverse range of examples.
ISBN: 9783030203818
Standard No.: 10.1007/978-3-030-20381-8doiSubjects--Topical Terms:
527684
Mechanics.
LC Class. No.: TA349-359
Dewey Class. No.: 531
Modeling High Temperature Materials Behavior for Structural Analysis = Part II. Solution Procedures and Structural Analysis Examples /
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This second part of the work on creep modeling offers readers essential guidance on practical computational simulation and analysis. Drawing on constitutive equations for creep in structural materials under multi-axial stress states, it applies these equations, which are developed in detail in part 1 of the work, to a diverse range of examples.
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