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Thin Film Materials Stress, Defect Formation and Surface Evolution
Introduction and overview-- 2. Film stress and substrate curvature-- 3.
Stress in anisotropic and patterned films-- 4. Delamination and fracture-- 5.
Thin Film Materials by L. B. Freund
Film buckling, bulging and peeling-- 6. Dislocation formation in epitaxial systems-- 7. Dislocation interactions and strain relaxation-- 8. Equilibrium and stability of surfaces-- 9.
- Thin Film Materials.
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The role of stress in mass transport. Theoretical concepts are underpinned by discussions on experimental methodology and observations.
Fundamental scientific concepts are embedded through sample calculations, a broad range of case studies with practical applications, thorough referencing, and end of chapter problems. With solutions to problems available on-line, this book will be essential for graduate courses on thin films and the classic reference for researchers in the field.
Dislocation formation in epitaxial systems.
- Thin Film Materials Stress, Defect Formation and Surface Evolution | nanomechanics.
- Thin film materials : stress, defect formation, and surface evolution in SearchWorks catalog.
Film stress and substrate curvature. Stress in anisotropic and patterned films.
Stress, Defect Formation and Surface Evolution
Film buckling bulging and peeling. Dislocation interactions and strain relaxation. Equilibrium and stability of surfaces.
Related Thin Film Materials: Stress, Defect Formation and Surface Evolution
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