Theory of DislocationsPresents 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. |
Contents
Dislocations | 13 |
Elasticity | 30 |
The Theory of Straight Dislocations | 59 |
Copyright | |
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Common terms and phrases
Acta anisotropic antiphase antiphase boundary approximation axis b₁ b₂ basal plane bonds bow-out Burgers vector calculations Chap charge climb configuration Consider defects deformation diamond cubic diffusion direction discussed dislocation line dislocation loop displacements dissociation edge dislocation effects elastic constants Equation equilibrium Eshelby factor fault energy fcc crystals FIGURE formation free energy free surface given by Eq glide plane indicate integral interaction energy interaction force interstitial isotropic J. P. Hirth jogs kink lattice line tension linear elasticity matrix metals motion normal nucleation orientation pair parallel partial dislocations perfect dislocation Phil Phys potential produced result screw dislocation segment self-energy shear stress Shockley partials shown in Fig slip plane slip systems Solids solute atoms stacking fault stacking-fault stair rods straight dislocation strain stress field superjogs symmetry temperatures tetrahedron theory tion unit length vacancy velocity дх



