2015
DOI: 10.1007/s11340-015-0083-4
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Sub-Grain Scale Digital Image Correlation by Electron Microscopy for Polycrystalline Materials during Elastic and Plastic Deformation

Abstract: Damage during loading of polycrystalline metallic alloys is localized at or below the scale of individual grains. Quantitative assessment of the heterogeneous strain fields at the grain scale is necessary to understand the relationship between microstructure and elastic and plastic deformation. In the present study, digital image correlation (DIC) is used to measure the strains at the sub-grain level in a polycrystalline nickel-base superalloy where plasticity is localized into physical slip bands. Parameters … Show more

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Cited by 141 publications
(112 citation statements)
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“…2 presents an example of a displacement field (along x -horizontal direction) and a strain map obtained between pairs of images over time (see Ref. [37]). Typical values below one pixel (<0.15% strain) are obtained with these imaging parameters.…”
Section: Digital Sem Image Correlationmentioning
confidence: 99%
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“…2 presents an example of a displacement field (along x -horizontal direction) and a strain map obtained between pairs of images over time (see Ref. [37]). Typical values below one pixel (<0.15% strain) are obtained with these imaging parameters.…”
Section: Digital Sem Image Correlationmentioning
confidence: 99%
“…The methodology used in this paper for the optimization of the SEM and DIC parameters necessary for the minimization of the variability in strain measurement at high spatial resolution is given in Ref. [37].…”
Section: Digital Sem Image Correlationmentioning
confidence: 99%
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“…To illustrate this a TiAl specimen with a pattern using colloidal SiO 2 applied as described elsewhere [13] underwent cyclic loading for 10 6 cycles at a stress of 425 MPa, approximately equal to the measured threshold stress, and exposure to 700°C for 1 h, Fig. 1.…”
Section: Introductionmentioning
confidence: 99%
“…In the past five years, significant progress has been made to improve our understanding of plasticity in polycrystals through the development of new experimental techniques, e.g., cross-correlation based high angular resolution (HR-EBSD) 8,9 and high spatial resolution digital image correlation (HR-DIC), [10][11][12][13] which provide the means to measure elastic and plastic deformation gradients within polycrystals, including elastic strain, lattice rotation, plastic strain, and continuum rotation.…”
Section: Introductionmentioning
confidence: 99%