Theory of Dislocations
Presents a comprehensive treatment of the fundamentals of dislocations. This book covers the elastic theory of straight and curved dislocations, and includes a chapter on elastic anisotropy. It also presents applications to the theory of dislocation motion at low and high temperatures.
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Partial Dislocations in FCC Metals
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applied approximation associated atoms axis barrier becomes boundary Burgers vector calculations Chap charge climb complete component concentration condition configuration Consider constant contribution coordinate core corresponding crystal deformation determined developed diffusion direction discussed displacements dissociation distance edge dislocation effects elastic energy equal Equation equilibrium example expression extended factor fault field FIGURE force formation function given gives glide plane grain grain boundary important indicate integral interaction involves jogs kink lattice length loop mechanism metals motion moving normal nucleation observed occur orientation pair parallel partial Peierls Phil Phys positive possible potential present problem produced pure region relation respect result screw dislocation segment shear shown in Fig shows simple slip Solids solution straight strain stress structure surface temperature theory tion twin unit vacancy yields York