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    Academic Journal
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    eBook

    Contributors: Polkowski, Wojciech

    Subject Terms: 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, Research and information: general, Physics

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