Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
1990, ISBN: 9780792306054
Gebunden, 332 Seiten, 241mm x 160mm x 23mm, Sprache(n): eng It is difficult to do justice to fracture mechanics in a textbook, for the subject encompasses so many disciplines. A general s… Meer...
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Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
1990, ISBN: 0792306058
[EAN: 9780792306054], Neubuch, [PU: Springer Netherlands], FAHRZEUG - FAHRZEUGBAU FAHRZEUGTECHNIK MECHANIK CONTINUUMCRACKS DEFORMATION DESIGN FRACTUREMECHANICS STABILITY PHYSIK ASTRONOMIE… Meer...
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Fracture Mechanics Criteria and Applications - gebruikt boek
1990, ISBN: 9780792306054
[PU: Springer Netherland], Gebrauchs- und Lagerspuren. Aus der Auflösung einer renommierten Bibliothek. Kann Stempel beinhalten. 1625986/203, DE, [SC: 0.00], gebraucht; gut, gewerbliches… Meer...
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Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
1990, ISBN: 0792306058
1990 Gebundene Ausgabe Fahrzeug - Fahrzeugbau - Fahrzeugtechnik, Mechanik, Fahrzeugbau, stability; continuumCracks; deformation; Design; fracturemechanics, mit Schutzumschlag 11, [PU:Sp… Meer...
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Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
ISBN: 9780792306054
hardback, [PU: Kluwer Academic Publishers]
Blackwells.co.uk |
Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
1990, ISBN: 9780792306054
Gebunden, 332 Seiten, 241mm x 160mm x 23mm, Sprache(n): eng It is difficult to do justice to fracture mechanics in a textbook, for the subject encompasses so many disciplines. A general s… Meer...
E.E. Gdoutos:
Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek1990, ISBN: 0792306058
[EAN: 9780792306054], Neubuch, [PU: Springer Netherlands], FAHRZEUG - FAHRZEUGBAU FAHRZEUGTECHNIK MECHANIK CONTINUUMCRACKS DEFORMATION DESIGN FRACTUREMECHANICS STABILITY PHYSIK ASTRONOMIE… Meer...
Fracture Mechanics Criteria and Applications - gebruikt boek
1990
ISBN: 9780792306054
[PU: Springer Netherland], Gebrauchs- und Lagerspuren. Aus der Auflösung einer renommierten Bibliothek. Kann Stempel beinhalten. 1625986/203, DE, [SC: 0.00], gebraucht; gut, gewerbliches… Meer...
Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
1990, ISBN: 0792306058
1990 Gebundene Ausgabe Fahrzeug - Fahrzeugbau - Fahrzeugtechnik, Mechanik, Fahrzeugbau, stability; continuumCracks; deformation; Design; fracturemechanics, mit Schutzumschlag 11, [PU:Sp… Meer...
bij Blackwells.co.uk
Fracture Mechanics Criteria and Applications - gebonden uitgave, pocketboek
ISBN: 9780792306054
hardback, [PU: Kluwer Academic Publishers]
Bibliografische gegevens van het best passende boek
auteur: | |
Titel: | |
ISBN: |
Gedetalleerde informatie over het boek. - Fracture Mechanics Criteria and Applications (Engineering Applications of Fracture Mechanics, 10, Band 10)
EAN (ISBN-13): 9780792306054
ISBN (ISBN-10): 0792306058
Gebonden uitgave
pocket book
Verschijningsjaar: 1990
Uitgever: Springer
332 Bladzijden
Gewicht: 0,660 kg
Taal: eng/Englisch
Boek bevindt zich in het datenbestand sinds 2007-10-20T21:42:44+02:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2024-02-16T14:24:25+01:00 (Amsterdam)
ISBN/EAN: 0792306058
ISBN - alternatieve schrijfwijzen:
0-7923-0605-8, 978-0-7923-0605-4
alternatieve schrijfwijzen en verwante zoekwoorden:
Auteur van het boek: emmanuel, gdoutos
Titel van het boek: engineering mechanics, fracture mechanics criteria application, fractur mechanics, non fracture, fracture mechanics criteria and applications
Gegevens van de uitgever
Auteur: E.E. Gdoutos
Titel: Engineering Applications of Fracture Mechanics; Fracture Mechanics Criteria and Applications
Uitgeverij: Springer; Springer Netherland
314 Bladzijden
Verschijningsjaar: 1990-11-30
Dordrecht; NL
Taal: Engels
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
Available
XIV, 314 p.
BB; Hardcover, Softcover / Physik, Astronomie/Mechanik, Akustik; Klassische Mechanik; Verstehen; continuum mechanics; cracks; deformation; design; fracture; fracture mechanics; mechanics; stability; Classical Mechanics; Automotive Engineering; Fahrzeugbau; BC
1. Introductory chapter.- 1.1. Conventional failure criteria.- 1.2. Characteristic brittle failures.- 1.3. Griffith’s work.- 1.4. Fracture mechanics.- References.- 2. Linear elastic stress field in cracked bodies.- 2.1. Introduction.- 2.2. Crack deformation modes and basic concepts.- 2.3. Eigenfunction expansion method for a semi-infinite crack.- 2.4. Westergaard method.- 2.5. Singular stress and displacement fields.- 2.6. Method of complex potentials.- 2.7. Numerical methods.- 2.8. Experimental methods.- 2.9. Three-dimensional crack problems.- 2.10. Cracks in bending plates and shells.- References.- 3. Elastic-plastic stress field in cracked bodies.- 3.1. Introduction.- 3.2. Approximate determination of the crack-tip plastic zone.- 3.3. Small-scale yielding solution for antiplane mode.- 3.4. Complete solution for antiplane mode.- 3.5. Irwin’s model.- 3.6. Dugdale’s model.- 3.7. Singular solution for a work-hardening material.- 3.8. Numerical solutions.- References.- 4. Crack growth based on energy balance.- 4.1. Introduction.- 4.2. Energy balance during crack growth.- 4.3. Griffith theory.- 4.4. Graphical representation of the energy balance equation.- 4.5. Equivalence between strain energy release rate and stress intensity factor.- 4.6. Compliance.- 4.7. Critical stress intensity factor fracture criterion.- 4.8. Experimental determination of KIc.- 4.9. Crack stability.- 4.10. Crack growth resistance curve (R-curve) method.- 4.11. Mixed-mode crack propagation.- References.- 5. J-Integral and crack opening displacement fracture criteria.- 5.1. Introduction.- 5.2. Path-independent integrals.- 5.3. J-integral.- 5.4. Relationship between the J-integral and potential energy.- 5.5. J-integral fracture criterion.- 5.6. Experimental determination of the J-integral.- 5.7.Stable crack growth studied by the J-integral.- 5.8. Mixed-mode crack growth.- 5.9. Crack opening displacement (COD) fracture criterion.- References.- 6. Strain energy density failure criterion.- 6.1. Introduction.- 6.2. Volume strain energy density.- 6.3. Basic hypotheses.- 6.4. Two-dimensional linear elastic crack problems.- 6.5. Uniaxial extension of an inclined crack.- 6.6. Three-dimensional linear elastic crack problems.- 6.7. Bending of cracked plates.- 6.8. Ductile fracture.- 6.9. Failure initiation in bodies without pre-existing cracks.- 6.10. Other criteria based on energy density.- References.- 7. Dynamic fracture.- 7.1. Introduction.- 7.2. Mott’s model.- 7.3. Stress field around a rapidly propagating crack.- 7.4. Strain energy release rate.- 7.5. Transient response of cracks to impact loads.- 7.6. Standing plane waves interacting with a crack.- 7.7. Crack branching.- 7.8. Crack arrest.- 7.9. Experimental determination of crack velocity and dynamic stress intensity factor.- References.- 8. Fatigue and environment-assisted fracture.- 8.1. Introduction.- 8.2. Fatigue crack propagation laws.- 8.3. Fatigue life calculations.- 8.4. Variable amplitude loading.- 8.5. Mixed-mode fatigue crack propagation.- 8.6. Nonlinear fatigue analysis based on the strain energy density theory.- 8.7. Environment-assisted fracture.- References.- 9. Engineering applications.- 9.1. Introduction.- 9.2. Fracture mechanics design philosophy.- 9.3. Design example problems.- 9.4. Fiber-reinforced composites.- 9.5. Concrete.- 9.6. Crack detection methods.- References.- Author Index.Andere boeken die eventueel grote overeenkomsten met dit boek kunnen hebben:
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