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We develop a dislocation climb model based on a phase field description that couples non-conservative dislocation motion and vacancy diffusion.
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Here for the first time we quantitatively investigate the strain hardening of a gradient interstitial-free steel by developing a dislocation density-based continuum plasticity model, in which the interaction of the component layers in the gradient structure is represented by incorporating GNDs and back stress.
We have developed a dislocation-based model to help explain this effect.
Additionally, preliminary thermal mechanical processing was used to develop a fine scale dislocation substructure for ultimate strengthening of the alloy.
No child had developed a hip dislocation.
Grains forming dislocation cells develop a self-organized and dynamically refined dislocation cell structure which follows the similitude principle but with a smaller similitude constant than that found in medium to high stacking fault energy alloys.
Unlike the B2 precipitates remained coherent exerting the classic Orowan bypassing mechanism at the brittle location, some of the B2 precipitates at the ductile location became incoherent and can develop an attractive interaction with dislocations.
Therefore, for cases of high hip dislocation, we developed a partial greater trochanter osteotomy method combined with less soft tissue release during THA.
In the ABG-I group 2 patients had an early dislocation, 1 patient developed a deep venous thrombosis, and 1 had an episode of subluxation.
In addition, it was shown that 〈0 0 1〉 and 〈1 1 1〉oriented grains develop different dislocation substructures during straining, exhibiting elongated cells/micro-bands and typical cell structures, respectively.
In fact, most infants who develop hip dislocation show several signs of joint laxity or subluxation at birth, or within one month of age.
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CEO of Professional Science Editing for Scientists @ prosciediting.com