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The surface strain and displacement are sensitive to damages and it can alter their distribution.
Planar digital image correlation is used to compute the surface strain fields.
Surface strain mapping indicated that severe localized deformation was accompanied by high-amplitude serrations.
Simultaneously, surface strain field measurements by three dimensional digital image correlations are undertaken.
Results are reported for surface deformations during the blast loading process, including 3D surface displacements, surface strain components, surface velocity and acceleration components for the out-of-plane displacement field and surface strain rate components.
Investigations on skin surface strain and sub-surface layer deformation during sliding, however, have not received as much attention.
The surface strain evolution in accumulative roll bonded aluminum alloys was studied in situ using digital image correlation.
Results are compared to experimental bearing stress strain and bearing stiffness strain responses, and surface strain measurements.
The finite element (FE) model generated is validated by comparing surface strain results with those obtained from the experiment.
In addition, the surface strain measurements provide a convenient and accurate insight into the stick slip transitions in fretting contacts.
Toward this goal, we must first be able to control atomic steps, reconstructed domains, surface strain, and atomic species.
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