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The elastic interaction of deposited material with dislocations may result in deposit repulsion from the dislocated regions.
Migration of hydrogen atoms and their interaction with dislocations are studied using mechanical spectroscopy.
The chapter explains multi-scale simulations to study the pressure wave propagation and interaction with dislocations in FCC single crystals.
The formation, morphology and interaction with dislocations of these precipitates were studied by means of scanning and transmission electron microscopy.
Combined with discrete dislocations dynamics, boundary value problems with dislocations in finite bodies can be solved.
The observation results suggest that solute niobium atoms solely have strong attractive interaction with dislocations.
Problems with dislocations in infinite medium, near free surfaces or bimaterial interfaces are studied.
The hardening mechanisms are associated with dislocations to precipitates bowing and/or cutting processes.
This permits continued dislocation activity within the γ phase with dislocations arranging themselves into low energy cell-structures in the γ phase via dislocation climb.
The result showed that the presence of coated SiC particles enhanced strength by inhibiting grain growth, while simultaneously interacting with dislocations.
The chapter elaborates the basic concepts related to edge and screw dislocations, the Burgers vector, mechanisms of slip and climb, and the strain energy associated with dislocations.
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CEO of Professional Science Editing for Scientists @ prosciediting.com