Superplasticity and Grain Boundaries in Ultrafine-Grained Materials: Woodhead Publishing in Materials
Autor Alexander P. Zhilyaev, Farid Z. Utyashev, Georgy I. Raaben Limba Engleză Paperback – 24 noi 2020
- Provides practical applications and methods for the proper implementation of models, allowing for more effective complex metal forming processes
- Features new chapters on the microstructure, mechanical behavior and functional properties of HCP metals, processing ultrafine-grained and nanostructured materials, and more
- Covers experimental assessment and computational modeling techniques for adiabatic heating and saturation of grain refinement during SPD of metals and alloys
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Specificații
ISBN-13: 9780128190630
ISBN-10: 0128190639
Pagini: 440
Dimensiuni: 152 x 229 mm
Greutate: 0.58 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing in Materials
ISBN-10: 0128190639
Pagini: 440
Dimensiuni: 152 x 229 mm
Greutate: 0.58 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing in Materials
Public țintă
Academic researchers in materials science, mechanical engineering, and mechanical metallurgy; advanced graduate students; practicing engineers, material scientists, and physicistsCuprins
Section A Advanced processing of ultrafine-grained and nanostructured materials 1. Basics of Nanostructure Processing 2. Influence of Deformation Mechanisms on Grain Refinement 3. Processing Ultrafine-Grained and Nanostructured Materials
Section B Grain boundary ensembles in polycrystalline materials 4. Characteristics of Grain Boundary Ensembles 5. Orientation-distributed Parameters of the Polycrystalline Structure 6. Experimental Investigations of Grain Boundary Ensembles in Polycrystals
Section C Microstructure and grain boundary ensembles in ultrafine-grained materials 7. Effect of the Parameters of Quasi-Hydrostatic Pressure on the Microstructure and Grain Boundary Ensembles in Nickel 8. Grain Boundary Processes in Ultrafine-grained Nickel and Nanonickel
Section D Theory of structural superplasticity of polycrystalline materials 9. Structural superplasticity of polycrystalline materials 10. Grain Boundary Sliding in Metallic Bi- and Tricrystals 11. Percolation Mechanism of Deformation Processes in Ultrafine-Grained Polycrystals 12. Duration of the Stable Flow in Superplastic Deformation 13. Derivation of Constitutive Equations in Multicomponent Loading Conditions
Section B Grain boundary ensembles in polycrystalline materials 4. Characteristics of Grain Boundary Ensembles 5. Orientation-distributed Parameters of the Polycrystalline Structure 6. Experimental Investigations of Grain Boundary Ensembles in Polycrystals
Section C Microstructure and grain boundary ensembles in ultrafine-grained materials 7. Effect of the Parameters of Quasi-Hydrostatic Pressure on the Microstructure and Grain Boundary Ensembles in Nickel 8. Grain Boundary Processes in Ultrafine-grained Nickel and Nanonickel
Section D Theory of structural superplasticity of polycrystalline materials 9. Structural superplasticity of polycrystalline materials 10. Grain Boundary Sliding in Metallic Bi- and Tricrystals 11. Percolation Mechanism of Deformation Processes in Ultrafine-Grained Polycrystals 12. Duration of the Stable Flow in Superplastic Deformation 13. Derivation of Constitutive Equations in Multicomponent Loading Conditions