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2015 | OriginalPaper | Buchkapitel

37. Multi-Camera DIC Offers New Dimensions in Material Testing

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Abstract

Optical full field techniques, like digital image correlation (DIC) become more and more standard tools for the determination of material parameters. Especially for anisotropic materials the multidimensional information is important. For example, up to now this is limited to 2D strain information. The use of the innovative cluster approach for DIC and a multi camera setup in a standard tensile test allows the access to the third dimension and measure not just the strain on one surface but on both surfaces and in thickness direction.
With the cluster approach the points to be evaluated are not defined by an image of one camera, like in conventional DIC systems, but on the object. In this case every object point seen by two or more cameras can be measured, independently of the arrangement of the cameras. In a front back side arrangement e.g. during a tensile test, both sides of the sample are measured simultaneously. As all cameras are calibrated in a common coordinate system the thickness of sample and any changes are measured directly. In this way the strain in thickness direction is measureable directly.
As an example we present the measurement on a simple aluminium sample up to failure. The difference in the strain in direction of thickness and on the surface indicates anisotropic material properties caused by the process of manufacturing.

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Literatur
1.
Zurück zum Zitat Sutton MA, McNeil SR, Helm JD, Chao YJ (2000) Advances in 2-D and 3-D computer vision for shape and deformation measurements. In: Rastogi PK (ed) Photomechanics, vol 77, Topics in applied physics. Springer, New York, pp 323–372CrossRef Sutton MA, McNeil SR, Helm JD, Chao YJ (2000) Advances in 2-D and 3-D computer vision for shape and deformation measurements. In: Rastogi PK (ed) Photomechanics, vol 77, Topics in applied physics. Springer, New York, pp 323–372CrossRef
2.
Zurück zum Zitat Sutton MA, Orteu J-J, Schreier HW (2009) Image correlation for shape, motion and deformation measurements. Springer, New York. ISBN 978-0-387-78746-6 Sutton MA, Orteu J-J, Schreier HW (2009) Image correlation for shape, motion and deformation measurements. Springer, New York. ISBN 978-0-387-78746-6
3.
Zurück zum Zitat Siebert T, Crompton MJ (2012) An approach to strain measurement uncertainty for DIC using the SPOTS calibration procedure. In: Proceedings of the SEM international conference and exposition on experimental and applied mechanics, paper 107, 11–12 June 2012 Siebert T, Crompton MJ (2012) An approach to strain measurement uncertainty for DIC using the SPOTS calibration procedure. In: Proceedings of the SEM international conference and exposition on experimental and applied mechanics, paper 107, 11–12 June 2012
4.
Zurück zum Zitat Orteu J-J, Bugarin F, Harvent J, Robert L, Velay V (2011) Multiple-camera instrumentation of a single point incremental forming process pilot for shape and 3D displacement measurements: methodology and results. Exp Mech 51:625–639CrossRef Orteu J-J, Bugarin F, Harvent J, Robert L, Velay V (2011) Multiple-camera instrumentation of a single point incremental forming process pilot for shape and 3D displacement measurements: methodology and results. Exp Mech 51:625–639CrossRef
Metadaten
Titel
Multi-Camera DIC Offers New Dimensions in Material Testing
verfasst von
Thorsten Siebert
Vinh Tran
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-06986-9_37

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