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Under cyclic torsion at a high shear strain amplitude, cross slip between slip bands of each slip system was an important process for the collapse of dislocation tangles into dislocation cell walls.
In all the metals studied, dislocations within the boundaries tend to rearrange themselves with increasing strain in the same sequence from tangles into dislocation cells with tangled boundaries, followed by dislocation boundaries consisting of wavy, parallel dislocations and finally into arrays of parallel dislocations.
This partition of a disconnection into dislocation and step portions facilitates the analysis of processes such as phase transformations; the dislocation portion is associated with the long-range strain field and shape change, and the step portion with divergences in diffusional fluxes associated with growth.
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Homogeneous dislocation nucleation at theoretical shear stresses is required for indentation into dislocation-free, single-crystalline volumes while grain boundaries provide a ready source for dislocations in fine-grained films.
In the framework of the model, gliding GB dislocations at triple junctions of GBs split into dislocations that climb along the adjacent boundaries.
Dislocation can be divided into edge dislocation, spiral dislocation, and mixed dislocation, among which mixed dislocation is most common.
Low-angle boundaries are consistent with formation by the accumulation of dislocations into high dislocation density walls that separate relatively dislocation free cells, or 'subgrains' and thus lowering the energy of the system.
With the holding time, large amounts of point defects produced during irradiation at RT accumulated into large dislocation loops and then dislocation nets which promoted the irradiation hardening.
In particular, the model incorporates the evolution of the particle size via coarsening into the dislocation climb theory, dislocation detachment mechanism and back-stress generated by subgrain dislocation structures.
MD simulation provided atomistic insights into the dislocation nucleation process and the BCPs' interaction with the GB.
The simulated plastic deformation proceeds by the formation of nanotwins, which rapidly evolve into shear dislocation loops.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com