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The precipitation behavior and dislocation pattern are characterized and discussed.
The short crack region exhibited a planar glide dislocation pattern, but multiple slip systems were activated as the crack lengthened.
The potential application of this unique property of the alternative dislocation pattern for nanoscale multilayered composite as a functional material is discussed.
As the dislocation pattern remained planar on each slip plane, the crack propagation occurred along the {1 1 1}γ slip planes, even in the long crack.
Dislocation pattern formation, surface slip localization and initial strain hardening were observed, in agreement with experimental observations, and possible explanations are given in the light of these simulations.
We mention, in particular, the recent formulation by El-Azab which incorporates statistical phenomena such as cross-slip (Xia and El-Azab 2015) and time averaging (Xia et al. 2016) and has shown promising results in modelling dislocation pattern formation.
Similar(50)
Developments of different dislocation patterns are presented and discussed.
Finally, the intrinsic relationship between various dislocation patterns and face centered cubic crystal structure was established.
The dislocation patterning changes from non-uniform to uniform under high-strain-rate.
The formation of typical dislocation patterns in copper under cyclic loading is closely associated with cross slip of screw dislocations.
Four distinctive node structures were identified: volume-smeared nodes with (i) spiral or (ii) straight dislocation patterns, and volume-condensed nodes with (iii) triangular or (iv) hexagonal dislocation patterns.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com