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The book "Polycrystalline Materials - Theoretical and Practical Aspects" is focused on contemporary investigations of plastic deformation, strength and grain-scale approaches, methods of synthesis, structurals, properties, and application of some polycrystalline materials. It is intended for students, post-graduate students, and scientists in the field of polycrystalline materials.
Polycrystals. --- Polycrystalline solids --- Polycrystalline substances --- Crystals --- Crystallography
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Crystals --- Plasticity --- Polycrystals --- #KVIV:BB --- Polycrystalline solids --- Polycrystalline substances --- Cohesion --- Deformations (Mechanics) --- Elasticity --- Plastics --- Rheology --- Crystallography --- Powders --- Solids --- Crystals. --- Plasticity. --- Polycrystals.
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This work approaches the fields of homogenization and of materials design for the linear and nonlinear mechanical properties with prescribed properties-profile. The set of achievable properties is bounded by the zeroth-order bounds (which are material specific), the first-order bounds (containing volume fractions of the phases) and the second-order Hashin-Shtrikman bounds with eigenfields in terms of tensorial texture coefficients for arbitrarily anisotropic textured materials.
Theoretische Schranken --- Materialdesign --- Materials design --- Homogenisierung --- Theoretical bounds --- Homogenization --- Polycrystals --- Polykristalle --- Mehrphasige Materialien --- Multiphase materials
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Computational Materials Engineering is an advanced introduction to the computer-aided modeling of essential material properties and behavior, including the physical, thermal and chemical parameters, as well as the mathematical tools used to perform simulations. Its emphasis will be on crystalline materials, which includes all metals. The basis of Computational Materials Engineering allows scientists and engineers to create virtual simulations of material behavior and properties, to better understand how a particular material works and performs and then use that knowledge to design improvements
Crystals --- Microstructure --- Polycrystals --- Mathematical models. --- Polycrystalline solids --- Polycrystalline substances --- Materials --- Matter --- Morphology --- Micromechanics --- Stereology --- Crystallography, Mathematical --- Constitution
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Grain boundaries. --- Polycrystals --- Superplasticity. --- Plastic properties. --- Metals --- Plasticity --- Polycrystalline solids --- Polycrystalline substances --- Crystals --- Crystal grain boundaries --- Crystal growth --- Dislocations in crystals --- Twinning (Crystallography) --- Ductility
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