The first complete account of the physics of the creep and fracture of ice, for graduates, engineers and scientists.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Erland M. Schulson completed his Ph.D. at the University of British Columbia, and is the George Austin Colligan Distinguished Professor of Engineering at Dartmouth College, New Hampshire. He has worked on physical metallurgy, materials science and ice mechanics in laboratories and universities in Canada, France, the USA and the UK. He has served as a Fellow of the Minerals, Metals and Materials Society and of ASM International, and been listed in ISI as a highly cited researcher in materials science. He holds four patents in the field, has published over 250 papers in international technical literature, and has been invited to lecture at over 100 conferences, workshops and research centres.
Inhaltsangabe
Preface 1. Introduction 2. Structure of ice 3. Microstructure of natural ice features 4. Physical properties: elasticity, diffusivity and friction 5. Plastic deformation of the ice single crystal 6. Ductile behavior of polycrystalline ice: experimental data and physical processes 7. Modelling the ductile behavior of isotropic and anisotropic polycrystalline ice 8. Rheology of high-pressure and planetary ices 9. Fracture toughness of ice 10. Brittle failure of ice under tension 11. Brittle compressive failure of unconfined ice 12. Brittle compressive failure of confined ice 13. Ductile-to-brittle transition under compression 14. Indentation fracture and ice forces on structures 15. Fracture of the ice cover on the Arctic Ocean References Index.
Preface 1. Introduction 2. Structure of ice 3. Microstructure of natural ice features 4. Physical properties: elasticity, diffusivity and friction 5. Plastic deformation of the ice single crystal 6. Ductile behavior of polycrystalline ice: experimental data and physical processes 7. Modelling the ductile behavior of isotropic and anisotropic polycrystalline ice 8. Rheology of high-pressure and planetary ices 9. Fracture toughness of ice 10. Brittle failure of ice under tension 11. Brittle compressive failure of unconfined ice 12. Brittle compressive failure of confined ice 13. Ductile-to-brittle transition under compression 14. Indentation fracture and ice forces on structures 15. Fracture of the ice cover on the Arctic Ocean References Index.
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