Electronic Basis of the Strength of Materials

Electronic Basis of the Strength of Materials

Einband:
Fester Einband
EAN:
9780521620055
Untertitel:
Englisch
Autor:
John J. Gilman
Herausgeber:
Cambridge University Press
Anzahl Seiten:
292
Erscheinungsdatum:
19.03.2012
ISBN:
0521620058

Klappentext A 2003 reference relating the strength characteristics of atoms to their electronic structure. Zusammenfassung This 2003 book relates the strength characteristics of constituent atoms to the electronic structures. It begins with short reviews of classical and quantum mechanics followed by reviews of the three major branches of the strength of materials: elastic stiffnesses; plastic responses; and the nature of fracture. Inhaltsverzeichnis Part I. Introduction: Part II. Elements of Solid Mechanics: 1. Nature of elastic stiffness; 2. Generalized stress; 3. Generalized strain; 4. Elastic coefficients; Part III. Elements of Electron Mechanics: 5. Properties of electrons; 6. Quantum states; 7. Periodic patterns of electrons; 8. Heisenberg's Principle; Part IV. Elastic Stiffness: 9. Cohesion of atoms; 10. Intramolecular cohesion; 11. Intermolecular cohesion; 12. Bulk modulus; 13. Shear moduli; 14. Entropic elasticity (polymers); 15. Universality and unification; Part V. Plastic Strength: 16. Macroscopic plastic deformation; 17. Microscopic plastic deformation; 18. Dislocation mobility; Part VI. Fracture Resistance: 19. Mechanics of cracks; 20. Surface and interfacial energies; 21. Fracturing rates.

Zusammenfassung
This 2003 book relates the strength characteristics of constituent atoms to the electronic structures. It begins with short reviews of classical and quantum mechanics followed by reviews of the three major branches of the strength of materials: elastic stiffnesses; plastic responses; and the nature of fracture.

Inhalt
Part I. Introduction: Part II. Elements of Solid Mechanics: 1. Nature of elastic stiffness; 2. Generalized stress; 3. Generalized strain; 4. Elastic coefficients; Part III. Elements of Electron Mechanics: 5. Properties of electrons; 6. Quantum states; 7. Periodic patterns of electrons; 8. Heisenberg's Principle; Part IV. Elastic Stiffness: 9. Cohesion of atoms; 10. Intramolecular cohesion; 11. Intermolecular cohesion; 12. Bulk modulus; 13. Shear moduli; 14. Entropic elasticity (polymers); 15. Universality and unification; Part V. Plastic Strength: 16. Macroscopic plastic deformation; 17. Microscopic plastic deformation; 18. Dislocation mobility; Part VI. Fracture Resistance: 19. Mechanics of cracks; 20. Surface and interfacial energies; 21. Fracturing rates.


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