2015The Proceedings of the Materials and Mechanics ConferenceOpen access

OS1010-224 Displacement and Strain Measurement Around a Crack Using Global Digital Image Correlation

Satoru Yoneyama, Kenichi SAKAUE, Shuichi Arikawa

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Abstract

The use of mesh based global digital image correlation is proposed for measuring displacement fields around a crack tip. Displacement components at all nodes of a finite element model are simultaneously obtainable from images before and after deformation by global digital image correlation. Therefore, discontinuous displacement fields can be obtained using a finite element mesh with a crack. The effectiveness is demonstrated by measuring the displacement fields around a desiccation crack. Results show that the near-tip displacement distributions are obtained using global digital image correlation with singular elements at the crack tip.

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The use of mesh based global digital image correlation is proposed for measuring displacement fields around a crack tip. Displacement components at all nodes of a finite element model are simultaneously obtainable from images before and after deformation by global digital image correlation. Therefore, discontinuous displacement fields can be obtained using a finite element mesh with a crack. The effectiveness is demonstrated by measuring the displacement fields around a desiccation crack. Results show that the near-tip displacement distributions are obtained using global digital image correlation with singular elements at the crack tip.

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Available abstract

The use of mesh based global digital image correlation is proposed for measuring displacement fields around a crack tip. Displacement components at all nodes of a finite element model are simultaneously obtainable from images before and after deformation by global digital image correlation. Therefore, discontinuous displacement fields can be obtained using a finite element mesh with a crack. The effectiveness is demonstrated by measuring the displacement fields around a desiccation crack. Results show that the near-tip displacement distributions are obtained using global digital image correlation with singular elements at the crack tip.

Key concepts: Digital image correlation, Displacement (psychology), Finite element method, Displacement field, Deformation (meteorology), Digital image, Crack tip opening displacement, Image (mathematics)

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