Design of Alloy Metals for Low-Mass Structures
English


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About The Book

Pd-10Au alloy; shear compression; texture; grain boundary sliding; TiAl alloys; dislocation; twinning; nanoindentation; ECCI; disconnection density; displacement discontinuity; crack nucleation; crack opening displacement; digital image correlation; Al-Cu-Li alloys; titanium aluminides; grain refinement; solidification; inoculation; TWIP steel; ECAP; deformation twinning; texture; VPSC; simulation; industrial ingot; steel; dendritic grain size; titanium; strain hardening; anisotropy; strain heterogeneity; acoustic emission; statistical analysis; collective dislocation dynamics; steel; Q&P; transition carbide; precipitation; HEXRD; TEM; grain size; texture; crystal plasticity; elasto-visco-plastic self-consistent (EVPSC) scheme; hardening; dislocation density; titanium; ironmaking; direct reduction; iron ore; DRI; shaft furnace; mathematical model; simulation; CO2 emissions; lattice structures; porous materials; 3D surface maps; finite element; fatigue; plasticity; steel ladle; non-metallic inclusions; simulation; aggregation; lateral extrusion ratio; Finite Element (FE) simulation; analytical modelling; plastic flow machining; back pressure; polycrystalline β-Ti; elastic anisotropy; elastic/plastic incompatibilities; elasto-viscoplastic self-consistent scheme (EVPSC); slip activity; microsegregation; gas tungsten arc welding; directional solidification; FM52 filler metal; ERNiCrFe-7; tip undercooling; rolling; asymmetric ratio; texture; thickness reduction per pass; grain refinement; steel; magnesium powders; HPT consolidation; microstructure; hardness; H-activation; high entropy alloy; crystallographic texture; groove rolling; elastic properties; crystal plasticity; non-Schmid effects; Taylor multiscale scheme; localized necking; bifurcation theory; excess nitrogen; clusters precipitation; Fe-Si and Fe-Cr nitrided alloys; APT and TEM characterization; metal matrix composite; in situ X-ray diffraction; internal stresses; phase transformation; microstructure; nickel-based single crystal superalloy; lattice mismatch; in situ experiments; X-ray diffractometry; creep; dislocations; diffraction; fast Fourier transform (FFT)-based method; discrete green operator; voxelization artifacts; sub-voxel method; simulated diffraction peaks; scattered intensity; shape memory alloys; architected cellular material; numerical homogenization; multiscale finite element method; steel; bainite; martensite; isothermal treatment; mechanical properties; austenite reconstruction; variant; magnesium; twinning; hardening; dislocations; crystal plasticity; self consistent methods; modeling; simulation; ironmaking; direct reduction; iron ore; DRI; shaft furnace; mathematical model; heterogeneous kinetics; heat and mass transfer
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