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The Theory of Straight Dislocations
The Theory of Curved Dislocations
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Acta anisotropic antiphase applied stress approximation axis barrier bonds bow-out Burgers vector calculations charge chemical potential climb concentration configuration Consider coordinate cross slip deformation diamond cubic diffusion dislocation core dislocation line displacements dissociation edge dislocation effects Equation equilibrium Eshelby example external factor fee crystals FIGURE formation free energy free surface given by Eq glide plane grain boundary integral interaction energy interaction force internal stress intersection interstitial isotropic J. P. Hirth jogs kink lattice line tension linear elasticity matrix mechanism metals mixed dislocation motion moving node normal nucleation orientation pair parallel partial dislocations Peierls perfect dislocation Phil Phys pileup possible potential Proc produced region result rotation screw dislocation segment shear stress shown in Fig slip plane slip systems Solids solute atoms stacking fault stacking-fault straight dislocation strain stress field superjogs temperature tetrahedron theory thermal tion twin unit length vacancy velocity