Accurate kinematic measurement at interfaces between dissimilar materials using conforming finite-element-based digital image correlation

  • Ran Tao
  • , Ali Moussawi
  • , Gilles Lubineau*
  • , Bing Pan
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Digital image correlation (DIC) is now an extensively applied full-field measurement technique with subpixel accuracy. A systematic drawback of this technique, however, is the smoothening of the kinematic field (e.g., displacement and strains) across interfaces between dissimilar materials, where the deformation gradient is known to be large. This can become an issue when a high level of accuracy is needed, for example, in the interfacial region of composites or joints. In this work, we described the application of global conforming finite-element-based DIC technique to obtain precise kinematic fields at interfaces between dissimilar materials. Speckle images from both numerical and actual experiments processed by the described global DIC technique better captured sharp strain gradient at the interface than local subset-based DIC.

Original languageEnglish
Pages (from-to)103-112
Number of pages10
JournalOptics and Lasers in Engineering
Volume81
DOIs
StatePublished - 1 Jun 2016

Keywords

  • Conformal mesh
  • Digital image correlation
  • Dissimilar material interface
  • Global DIC

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