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Observation of Dislocations
Movement of Dislocations
Elastic Properties of Dislocations
10 other sections not shown
alloy Amelinckx angle applied stress array atoms body-centred cubic metals Burgers vector climb close-packed Cottrell cross slip cubic lattice diffraction diffusion dipole dislocation line dislocation loops dislocation moves Dislocations in Crystals displacement dissociation edge dislocation elastic strain Electron Microscopy equation equilibrium etch pits example extended dislocations extra half plane face-centred cubic metals Field Ion Microscopy force formation formed glide plane grain boundaries illustrated in Fig interaction energy interface intersection interstitial atom jogs layer lithium fluoride mechanism micrograph normal nucleation observed occurs orientation parallel partial dislocations Phil Phys plastic deformation platelets position precipitates produced pure screw screw dislocation set of dislocations shear stress Shockley partial shown in Fig single crystal slip plane solute atoms spacing specimen stacking fault energy stacking sequence strain energy strain field stress field surface temperature tetrahedron thermal tilt boundary tion Transmission electron twinning unit cell unit dislocation unit length vacancies