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N S STOLOFF and R G DAVIES
Dislocation Structure in Superlattices
The Strength of Ordered Alloys
9 other sections not shown
Acta activation energy alloys Amer analysis antiphase antiphase boundary behavior binding Burgers vector chondrites chondrules composition condition constant crack growth crack length creep rate cross-slip Cu3Au decrease deformation degree of order disordered domain ductility effect elastic misfit elastic modulus energy for creep enthalpy entropy equation equilibrium experimental Fe3Al FeCo FeCo-V flow stress fracture toughness free energy function glide grain boundary hexahedrites high temperature increase Inst iron meteorites kamacite lattice long-range order Marcinkowski matrix measurements Mg3Cd nickel content observed obtained octahedrites parameter phase Phys plane plastic zone plessite polycrystalline pure metals quenched range region screw dislocations shear Sherby short-range order shown in Fig silicate single crystals slip solid solution solute atom specimen stacking fault energy steady state creep strain hardening strain rate strength structure subgrain superlattice dislocations taenite temperature dependence tensile tests theory thermal tion Trans twinning unit dislocations vacancy