Scalar Damage and Healing Mechanics
Autor George Z. Voyiadjis, Peter I. Kattanen Limba Engleză Paperback – 10 oct 2022
Readers are additionally introduced to fundamental concepts such as effective stress, damage evolution, plane stress damage decomposition, and other damage processes that form the basis for a better understanding of the more advanced chapters.
- Synthesizes the latest research in damage mechanics and the healing mechanics of materials, including thermodynamics, elasticity and plasticity
- Includes practical exercises and problems for readers to work with before performing their own modeling scenarios
- Covers various scalar damage variables and outlines different damage processes
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Specificații
ISBN-13: 9780128233399
ISBN-10: 0128233397
Pagini: 372
Ilustrații: 150 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128233397
Pagini: 372
Ilustrații: 150 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Effective Stress
2. Damage Evolution
3. Decomposition of the Damage Variable
4. Other Decomposition Issues
5. Other Damage Variables
6. Damage in Composite Materials - Overall Approach
7. Damage in Composite Materials - Local Approach
8. Complex Damage Variables
9. Damage Described in Terms of Stiffness Degradation
10. Damage Described in Terms of Area Reduction
11. Damage and Healing Mechanics
12. Evolution of Damage and Healing
13. Small Damage and Small Healing
14. Healing Processes in Series and in Parallel
15. Thermodynamics of Damage and Healing
16. Undamageable Materials 1
17. Undamageable Materials 2
18. Super Healing
19. Singularity Formation
20. Stages of the Damage Process
21. Independent and Dependent Damage Processes
22. Special Damage Processes Described Mathematically
23. Damage in Graphene, Carbon Nanotubes, and Lithium Ion Batteries
24. Logarithmic and Exponential Damage
25. Integrity and Damageability
26. Unhealable Damage and Undamageable Integrity
27. Nonlinear Healing
28. Stages of the Healing Process
29. Integrity Field
30. Healing Field
31. Small Damage in Composite Materials
32. Composition of Damage Variables
2. Damage Evolution
3. Decomposition of the Damage Variable
4. Other Decomposition Issues
5. Other Damage Variables
6. Damage in Composite Materials - Overall Approach
7. Damage in Composite Materials - Local Approach
8. Complex Damage Variables
9. Damage Described in Terms of Stiffness Degradation
10. Damage Described in Terms of Area Reduction
11. Damage and Healing Mechanics
12. Evolution of Damage and Healing
13. Small Damage and Small Healing
14. Healing Processes in Series and in Parallel
15. Thermodynamics of Damage and Healing
16. Undamageable Materials 1
17. Undamageable Materials 2
18. Super Healing
19. Singularity Formation
20. Stages of the Damage Process
21. Independent and Dependent Damage Processes
22. Special Damage Processes Described Mathematically
23. Damage in Graphene, Carbon Nanotubes, and Lithium Ion Batteries
24. Logarithmic and Exponential Damage
25. Integrity and Damageability
26. Unhealable Damage and Undamageable Integrity
27. Nonlinear Healing
28. Stages of the Healing Process
29. Integrity Field
30. Healing Field
31. Small Damage in Composite Materials
32. Composition of Damage Variables