Introduction to Nonlinear Thermomechanics: Theory and Finite-Element Solutions - gebonden uitgave, pocketboek
1991, ISBN: 3540197036
[SR: 7078167], Hardcover, [EAN: 9783540197034], Springer, Springer, Book, [PU: Springer], 1991-12-16, Springer, 922354, Mechanics, 278122, Civil Engineering, 278115, Engineering & Technol… Meer...
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Introduction to Nonlinear Thermomechanics: Theory and Finite-Element Solutions - gebonden uitgave, pocketboek
1991, ISBN: 9783540197034
Springer, Hardcover, Auflage: Edition. ed. 187 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Book, 0.42 kg, Books Global Store, Special Features, Books, Mechanics, Civil Engine… Meer...
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1991, ISBN: 9783540197034
gebonden uitgave
Springer, Gebundene Ausgabe, Auflage: 1st, 197 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Buch, 0.94 kg, Bauwesen, Ingenieurwissenschaften, Fachbücher, Kategorien, Bücher, L… Meer...
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1991, ISBN: 9783540197034
gebonden uitgave
Springer, Gebundene Ausgabe, Auflage: 1st, 197 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Buch, 0.94 kg, Bauwesen, Ingenieurwissenschaften, Fachbücher, Kategorien, Bücher, L… Meer...
amazon.de _Gagazet Media_ Gut Verzendingskosten:Gewöhnlich versandfertig in 4 bis 5 Tagen. Die angegebenen Versandkosten können von den tatsächlichen Kosten abweichen. (EUR 3.00) Details... |
1992, ISBN: 9783540197034
Hard cover, Book. Satisfaction Guranteed: Unused Very good condition., Used-Very Good, [PU: SPRINGER-VERLAG]
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Introduction to Nonlinear Thermomechanics: Theory and Finite-Element Solutions - gebonden uitgave, pocketboek
1991, ISBN: 3540197036
[SR: 7078167], Hardcover, [EAN: 9783540197034], Springer, Springer, Book, [PU: Springer], 1991-12-16, Springer, 922354, Mechanics, 278122, Civil Engineering, 278115, Engineering & Technol… Meer...
Sluzalec, Andrzej:
Introduction to Nonlinear Thermomechanics: Theory and Finite-Element Solutions - gebonden uitgave, pocketboek1991, ISBN: 9783540197034
Springer, Hardcover, Auflage: Edition. ed. 187 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Book, 0.42 kg, Books Global Store, Special Features, Books, Mechanics, Civil Engine… Meer...
1991
ISBN: 9783540197034
gebonden uitgave
Springer, Gebundene Ausgabe, Auflage: 1st, 197 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Buch, 0.94 kg, Bauwesen, Ingenieurwissenschaften, Fachbücher, Kategorien, Bücher, L… Meer...
1991, ISBN: 9783540197034
gebonden uitgave
Springer, Gebundene Ausgabe, Auflage: 1st, 197 Seiten, Publiziert: 1991-12-16T00:00:01Z, Produktgruppe: Buch, 0.94 kg, Bauwesen, Ingenieurwissenschaften, Fachbücher, Kategorien, Bücher, L… Meer...
1992, ISBN: 9783540197034
Hard cover, Book. Satisfaction Guranteed: Unused Very good condition., Used-Very Good, [PU: SPRINGER-VERLAG]
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Gedetalleerde informatie over het boek. - Introduction to Nonlinear Thermomechanics: Theory and Finite-Element Solutions
EAN (ISBN-13): 9783540197034
ISBN (ISBN-10): 3540197036
Gebonden uitgave
Verschijningsjaar: 1991
Uitgever: Springer
Boek bevindt zich in het datenbestand sinds 2017-01-30T07:16:53+01:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2023-07-27T10:26:00+02:00 (Amsterdam)
ISBN/EAN: 3540197036
ISBN - alternatieve schrijfwijzen:
3-540-19703-6, 978-3-540-19703-4
alternatieve schrijfwijzen en verwante zoekwoorden:
Auteur van het boek: sluzalec
Titel van het boek: introduction nonlinear thermomechanics, nonlinear finite element
Gegevens van de uitgever
Auteur: Andrzej Sluzalec
Titel: Introduction to Nonlinear Thermomechanics - Theory and Finite-Element Solutions
Uitgeverij: Springer; Springer Berlin
187 Bladzijden
Verschijningsjaar: 1991-12-16
London; GB
Gewicht: 0,425 kg
Taal: Engels
85,55 € (DE)
87,95 € (AT)
106,60 CHF (CH)
Not available, publisher indicates OP
BB; Book; Hardcover, Softcover / Physik, Astronomie/Thermodynamik; Thermodynamik und Wärme; Verstehen; nichlineare Themodynamik; finite element method; Wärmeübertragung; Finite Elements; thermomechanics; Heat Flow; Rechnergestützte Konstruktion; B; Thermodynamics; Physics and Astronomy; Construction Management; Fluid- and Aerodynamics; Classical Mechanics; Complex Systems; Statistical Physics and Dynamical Systems; Bauhandwerk; Physik: Strömungsmechanik; Klassische Mechanik; Statistische Physik; Dynamik und Statik; Statistische Physik; BC; EA
I. Basic Considerations and Notions.- 1 A State of Stress and Strain.- 1.1 Stress.- 1.2 Strain.- 2 Finite Strains.- 2.1 Finite Strain Tensor in Material and Spatial Descriptions.- 2.2 Deformation Rate Tensor.- 2.3 Stress Measures.- 2.4 Final Remarks.- 3 Temperature.- 3.1 Heat Conduction.- 3.2 Heat Convection.- 3.3 Heat Radiation.- 3.4 Temperature Field in a Heat-Conducting Body.- 3.5 Navier-Stokes Equation.- 4 Thermodynamical Considerations.- 4.1 Thermomechanical Process.- 4.2 Formulation of the Constitutive Law.- II. Fundamentals of Elasticity and Plasticity Theory.- 5 Stress-Strain Curve.- 6 Elasticity.- 7 Plasticity.- 7.1 Idealization of Tension Test.- 7.2 Ideal Plasticity Theories.- 7.2.1 Yield Criteria.- 7.2.2 Hencky-Iljuszyn Deformation Theory.- 7.2.3 Plastic Flow Theory.- 7.2.4 Comparison of Flow Theory and Deformation Theory.- 7.2.5 Ideal Plasticity Theory for Finite Deformations.- 8 Work-Hardening Equation.- 8.1 Drucker Postulate.- 8.1.1 Stability of Plastic Material in the Drucker Sense..- 8.1.2 Associated Plastic Flow.- 8.2 Yield Surfaces for Work-Hardening Materials.- 8.2.1 Experimental Results.- 8.2.2 Isotropic Hardening.- 8.2.3 Kinematic Hardening.- III. Small Strain Thermo-Elasto-Plasticity.- 9 Equations for Thermo-Elasto-Plasticity.- 9.1 Isotropic Hardening.- 9.2 Kinematic Hardening.- 9.3 Elasto-Visco-Plasticity.- 10 Finite-Element Solution.- 10.1 Finite-Element Solution of Heat Flow Equations.- 10.1.1 Weighted Residual Method.- 10.1.2 Variational Formulation.- 10.1.3 Time Integration Schemes for Nonlinear Heat Conduction.- 10.1.4 Stability Analysis.- 10.2 Finite-Element Solution of Navier-Stokes Equations.- 10.3 Modelling of the Phase Change Process.- 10.4 Examples of Thermal Problems.- 10.4.1 Heat Flow with Phase Change..- 10.4.2 Navier-Stokes Equations.- 10.5 Finite-Element Solution of Thermo-Elasto-Plastic Problems.- 10.5.1 Variational Formulation.- 10.5.2 Integration.- 10.5.3 Methods of Iterative Accumulation.- 10.5.4 Tangent Stiffness Matrices.- 10.6 Examples of Thermo-Elasto-Plastic Analyses.- IV. Creep.- 11 Theoretical Background to Creep.- 11.1 Creep and Relaxation Tests.- 11.2 Creep at Constant Uniaxial Stress.- 11.2.1 Time Functions.- 11.2.2 Stress Functions.- 11.2.3 Temperature Functions.- 11.2.4 Stress and Time Functions.- 11.3 Creep Theories with Time-Dependent Uniaxial Stress.- 11.3.1 Total Strain Theory.- 11.3.2 Time Hardening Theory.- 11.3.3 Strain Hardening Theory.- 11.3.4 Heredity Theory.- 11.4 Creep Theories in Complex Stress State.- 11.4.1 Creep Theory of Deformational Type.- 11.4.2 Flow Theories and Creep Potential.- 11.4.3 Generalization of Strain Hardening Theory.- 12 Creep Rupture.- 12.1 Experimental Studies.- 12.2 Ductile Rupture Theories.- 12.3 Brittle Rupture Theories.- 12.4 Rupture of Mixed Type.- 13 Constitutive Equations for Thermo-Elasto-Plastic and Creep Analysis.- 14 Finite-Element Formulation.- 14.1 Matrix Equation for Thermo-Elasto-Plastic and Creep Problems.- 14.2 Remarks on Solution Procedures.- 14.3 Examples.- V. Finite Strains.- 15 Finite Strain Models.- 16 Constitutive Equations.- 16.1 Non-Isothermal Plastic Flow.- 16.2 Multiplicative Decomposition of the Deformation Gradient.- 17 Finite-Element Formulation for Non-Isothermal Plastic Flow.- 17.1 Total Lagrange Formulation.- 17.2 Updated Lagrange and Updated Lagrange-Jaumann Formulations.- 17.3 Updated Lagrange-Hughes Formulation.- VI. Coupled Thermo-Plasticity.- 18 Equations of Coupled Thermo-Plasticity.- 18.1 Heat Transfer Equations.- 18.2 Finite-Element Formulation for the Heat Flow Equation.- 18.3 Internal Dissipation function.- 18.4 Stress-Strain Relations in Coupled Thermo-Plasticity.- 18.4.1 Thermo-Elasto-Plastic Model Based on Additive Decomposition of Strain.- 18.4.2 Thermo-Rigid Plastic and Thermo-Rigid Visco-Plastic Models.- 18.4.3 Remarks on Other Models.- 18.5 Coupled Thermomechanical Algorithm.- 18.6 Examples.- References and Further Reading.The author is a well-known and respected authority in the field of Computational Mechanics and his personal experience forms the basis of the book.
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