2010
DOI: 10.1002/adem.200900333
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Plasticity and Grain Boundary Diffusion at Small Grain Sizes

Abstract: Severe plastic deformation (SPD) processes have attracted considerable attention due to their potential for fabricating large quantities of material with an overall small grain size. [1,2] In the last decade, various SPD processes have been proposed for ultragrain refinement, such as high pressure torsion (HPT), [1] equal channel angular pressing (ECAP) [3] accumulative roll bonding (ARB) [4] or-for achieving the smallest grain sizes for pure metals through SPD-repeated cold rolling (RCR) [5,6] as attractive r… Show more

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Cited by 85 publications
(34 citation statements)
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“…In addition, recent studies showed that diffusion or segregation processes in ufg materials are considerably influenced by the highly-distorted non-equilibrium grain boundaries [65][66][67][68]. The vacancy-type free volumes are supposed to be mainly located in the grain boundary regions, thus enhancing grain boundary diffusion.…”
Section: Discussionmentioning
confidence: 99%
“…In addition, recent studies showed that diffusion or segregation processes in ufg materials are considerably influenced by the highly-distorted non-equilibrium grain boundaries [65][66][67][68]. The vacancy-type free volumes are supposed to be mainly located in the grain boundary regions, thus enhancing grain boundary diffusion.…”
Section: Discussionmentioning
confidence: 99%
“…For example, recent studies demonstrated that transport properties of UFG materials (diffusion, segregation, etc.) are markedly affected by a so-called "nonequilibrium" grain boundary state [8][9][10]. At this place it is important to highlight that a broad spectrum of diffusivities of short-circuit paths is observed in UFG materials -contributions of high-angle grain boundaries with both "normal" and significantly enhanced diffusion rates can be differentiated in SPD-processed materials [11,12].…”
Section: Introductionmentioning
confidence: 99%
“…2(a) was analyzed by the method of geometric phase analysis (GPA) that allows calculating relative magnitudes of the in-plane components of the strain tensor and of the tensor of rigid body rotation with respect to a reference lattice, based on the intensity distribution in high resolution electron micrographs [28,29]. Details concerning the analysis and concerning the conditions under which the HRTEM micrograph was taken can be found in [9]. One result of this analysis is displayed in Fig.…”
mentioning
confidence: 99%
“…And the geometric phase analysis was applied to determine the atomic level strains in high-resolution TEM (HRTEM) images, following the experimental process in Ref. [15]. Foils were mechanically thinned and electropolished in an electrolyte of 10 vol.% perchloric acid and 90 vol.% ethanol at −20°C.…”
Section: Methodsmentioning
confidence: 99%