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Título de Acceso Abierto
Crystal Plasticity: Volume II
Resumen/Descripción – provisto por la editorial
No disponible.
Palabras clave – provistas por la editorial
aluminum; nickel; superalloys; γ′- and γ-phases; close-packed phases; rhenium; ultra-thin grain-oriented silicon steel (UTGO); cold rolling; twinning; Goss; {100}; Ti2AlNb alloy; mechanical properties; constitutive relation; Johnson–Cook model; grain boundary; crystallographic orientation; crystallographic plasticity; deformation behavior; Mg-based alloy; first principles; structural properties; tensile properties; high purity titanium; FCC phase; TKD; pole figure; transformation matrix; Bi–Sn alloy; microhardness; self-annealing; superplasticity; tube high-pressure shearing; shape memory alloys; FeNiCoAlTiNb; microstructure; shape memory effect; martensitic transformation; brass-type shear band; twin–matrix lamellae; coplanar slip; Taylor model; Cu–Zn alloy; cold-rolling texture; X-ray diffraction; zirconium; strain-gradient crystal plasticity; slip band; geometrically necessary dislocation; statistically stored dislocation; high angular resolution electron back scatter diffraction; crystal plasticity; multilevel models; large strain; motion decomposition; constitutive law; anisotropic materials; corotational derivative; strain rate; temperature; polycrystalline Cu6Sn5; molecular dynamic; ECAP; copper alloy; strain homogeneity; 3D FEM; thermodynamic modeling; magnesium; phase diagram; liquidus projection; nickel-based superalloy; anisotropy; slip system modelling; Schmid factor; Young’s moduli; dual-phase steel; forming limit diagrams; DAMASK; M-K approach; Keeler-Brazier approach; different grades; RSD; simulate r egression models; processing and parameters; analysis of variance; resin pigment blends; laser weld; heat input; cooling rate; residual stresses; fusion zone; meso scale; coupled temperature-displacement; dislocations; diffusion; FeC alloy; dynamic strain aging; superelasticity; FeNiCoAlTi; multi-scale modeling; gradient materials; 21-4N valve steel; mechanical alloying; vacuum hot pressing; powder metallurgy; slip; mechanical twinning; constitutive modeling; finite element simulations; twin volume fraction; plastic deformation; low-cycle fatigue; pre-damage; low alloy steel; coupling damage; nickel-free austenitic stainless steel; phase transition; profile analysis; whole powder pattern modeling; Nano (Ti,Cr)C powder; mechanical alloying (MA); nanostructure; n/a
Disponibilidad
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Información
Tipo de recurso:
libros
ISBN electrónico
978-3-0365-6288-9
País de edición
Suiza