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In most areas, the C atoms were homogeneously distributed, and only a few C-enriched features were detected, which were presumably Cottrell atmospheres surrounding dislocation cores.
The value of P/πc2, where P is the load and c the radius of the surrounding dislocation zone, is however fairly constant with respect to load, with a variation of only about 10% in the same load range.
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Measurements of the radii of the plasticity zones from TEM images indicate that the core and the surrounding low dislocation density zone did not evolve in a self-similar manner with increasing load.
With increasing number of cycles, the dislocations are gradually grouped together in planar bands with high dislocation density, surrounded by dislocation-poor areas.
Stress fields that surround dislocations can also facilitate diffusion of trace element impurities into their cores – so called Cottrell atmospheres [61 63] – which leads to enrichment in domains with high dislocation density (e.g., at low-angle boundaries).
The indentation plasticity fields are found to consist of two regions, namely, a core with a very high dislocation density and a surrounding region where the dislocation density is much lower.
Close to the edge of the QD, the dislocations curve to meet the surface and form a network of threading dislocations surrounding the system.
When they are close to the boundary of the quantum dot, the dislocations bend due to the free surface forces, thus forming a network of threading dislocations surrounding the QD.
Therefore, we believe that these results show a network of threading dislocations surrounding the QD.
Tissue engineering of certain load-bearing parts of the body can be dependent on scaffold adhesion or integration with the surrounding tissue to prevent dislocation.
PaCSs apparently arise in the cytoplasm interposed between RER cisternae by focal, progressive concentration of their distinctive particles at sites where bacterial products accumulate (Figure 2F and f), with subsequent dislocation of surrounding cytoplasm and its organelles.
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