Damage and Healing Mechanics of Materials (eBook, ePUB)
Metals and Metal Matrix Composites
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Damage and Healing Mechanics of Materials (eBook, ePUB)
Metals and Metal Matrix Composites
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Damage and Healing Mechanics of Materials: Metals and Metal Matrix Composites covers the fundamentals of damage mechanics, with various damage models presented coupled with elastic and elasto-plastic behavior. Experimental investigations and the related data for damage in composite materials are included, as are computational modeling and simulation methods for investigating damage and healing in various materials and structures. Healing mechanics using both scalars and more general theory based on tensor notations are discussed, as are applications of damage mechanics. Undamageable materials,…mehr
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- Produktdetails
- Verlag: Elsevier Science & Techn.
- Seitenzahl: 960
- Erscheinungstermin: 27. Juni 2025
- Englisch
- ISBN-13: 9780443290619
- Artikelnr.: 74796228
- Verlag: Elsevier Science & Techn.
- Seitenzahl: 960
- Erscheinungstermin: 27. Juni 2025
- Englisch
- ISBN-13: 9780443290619
- Artikelnr.: 74796228
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
2. Uniaxial tension in metals
3. Uniaxial tension in elastic metal matrix composites
4. Uniaxial tension in elasto-plastic metal matrix composites: vector
formulation
PART II Anisotropic damage mechanics - tensor formulation
5. Damage and elasticity in metals
6. Damage and plasticity in metals
7. Metal matrix composites-overall approach
8. Metal matrix composites-local approach
9. Equivalence of the overall and local approaches
10. Metal matrix composites-local and interfacial damage
11. Symmetrization of the effective stress tensor
12. Experimental damage investigation
13. High cyclic fatigue damage for uni-directional metal matrix composites
14. Anisotropic cyclic damage-plasticity models for metal matrix composites
PART III Advanced topics in damage mechanics
15. Damage in metal matrix composites using the generalized cells model
16. The kinematics of damage for finite-strain elasto-plastic solids
17. A coupled anisotropic damage model for the inelastic response of
composite materials
PART IV Damage mechanics with fabric tensors
18. Damage mechanics with fabric tensors
19. Continuum approach to damage mechanics of composite materials with
fabric tensors
20. Micromechanical approach to damage mechanics of composite materials
with fabric tensors
21. Experimental study and fabric tensor quantification of micro-crack
distributions in composite materials
PART V Introduction to healing mechanics
22. Mechanics of damage, healing, damageability, and integrity of materials
23. Introduction to the mechanics and design of undamageable materials
24. The theory of elastic undamageable materials
25. Governing differential equations for the mechanics of undamageable
materials
26. Continuum damage-healing mechanics with introduction to new healing
variables
27. A thermodynamic consistent damage and healing model for self-healing
materials
PART VI Applications of damage mechanics
28. Effects of fatigue damage and wear on fretting fatigue under partial
slip condition
29. Phase field based nonlocal anisotropic damage mechanics model
30. Fatigue damage analysis of double-lap bolted joints considering the
effects of hole cold expansion and bolt clamping force
31. Fatigue and fretting fatigue life prediction of double-lap bolted
joints using continuum damage mechanics based approach
32. Analysis on the fatigue damage evolution of notched specimens with
consideration of cyclic plasticity
Appendix
A: Formulas for Chapter 7
B: Formulas for Chapter 8
C: Formulas for Chapter 11
D: Formulas for Chapter 12
2. Uniaxial tension in metals
3. Uniaxial tension in elastic metal matrix composites
4. Uniaxial tension in elasto-plastic metal matrix composites: vector
formulation
PART II Anisotropic damage mechanics - tensor formulation
5. Damage and elasticity in metals
6. Damage and plasticity in metals
7. Metal matrix composites-overall approach
8. Metal matrix composites-local approach
9. Equivalence of the overall and local approaches
10. Metal matrix composites-local and interfacial damage
11. Symmetrization of the effective stress tensor
12. Experimental damage investigation
13. High cyclic fatigue damage for uni-directional metal matrix composites
14. Anisotropic cyclic damage-plasticity models for metal matrix composites
PART III Advanced topics in damage mechanics
15. Damage in metal matrix composites using the generalized cells model
16. The kinematics of damage for finite-strain elasto-plastic solids
17. A coupled anisotropic damage model for the inelastic response of
composite materials
PART IV Damage mechanics with fabric tensors
18. Damage mechanics with fabric tensors
19. Continuum approach to damage mechanics of composite materials with
fabric tensors
20. Micromechanical approach to damage mechanics of composite materials
with fabric tensors
21. Experimental study and fabric tensor quantification of micro-crack
distributions in composite materials
PART V Introduction to healing mechanics
22. Mechanics of damage, healing, damageability, and integrity of materials
23. Introduction to the mechanics and design of undamageable materials
24. The theory of elastic undamageable materials
25. Governing differential equations for the mechanics of undamageable
materials
26. Continuum damage-healing mechanics with introduction to new healing
variables
27. A thermodynamic consistent damage and healing model for self-healing
materials
PART VI Applications of damage mechanics
28. Effects of fatigue damage and wear on fretting fatigue under partial
slip condition
29. Phase field based nonlocal anisotropic damage mechanics model
30. Fatigue damage analysis of double-lap bolted joints considering the
effects of hole cold expansion and bolt clamping force
31. Fatigue and fretting fatigue life prediction of double-lap bolted
joints using continuum damage mechanics based approach
32. Analysis on the fatigue damage evolution of notched specimens with
consideration of cyclic plasticity
Appendix
A: Formulas for Chapter 7
B: Formulas for Chapter 8
C: Formulas for Chapter 11
D: Formulas for Chapter 12







