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Comparison of the mechanical behaviour of standard and auxetic foams by X-ray computed tomography and digital volume correlation

Comparison of the mechanical behaviour of standard and auxetic foams by X-ray computed tomography and digital volume correlation
Comparison of the mechanical behaviour of standard and auxetic foams by X-ray computed tomography and digital volume correlation
The tensile behaviour of standard and auxetic polyurethane foams are contrasted by digital volume correlation of 3D images collected by in situ X-ray computed tomography (CT). It was found that subset sizes of 32 and 64 voxels for the auxetic and standard foams were optimal for strain resolutions in the order of 0.1%. For the standard foam, good uniformity of strain was observed at low strains giving a tangent Poisson's ratio of 0.5. Some heterogeneity of strain was observed at higher strains, which may be related to the fixtures. The behaviour of the auxetic foam was totally different, with strain being spatially heterogeneous with transverse strains both positive and negative but giving a negative Poisson's ratio on average. This suggests that the unfolding tendency of some groups of cells was higher than others because of the complex frozen starting microstructure. Further different methods of deriving Poisson's ratio gave different results. Besides revealing interesting microstuctural mechanisms of transverse straining, the study also shows digital volume correlation of tomography sequences to be the perfect tool to study complex mechanical behaviour of cellular materials
1475-1305
1-16
Pierron, F.
a1fb4a70-6f34-4625-bc23-fcb6996b79b4
McDonald, S.A.
6963c813-c220-4672-8094-3f58603cad9f
Hollis, D.
8d3d27b8-d460-4ca7-a592-c6804e00e031
Fu, J.
76cdabe5-fdd1-49e0-ba72-1524bca50df9
Withers, P.J.
95b52224-f306-43a5-b75f-a2828b339f77
Alderson, A.
be7a3f5c-d035-4396-b97f-a58c9199f283
Pierron, F.
a1fb4a70-6f34-4625-bc23-fcb6996b79b4
McDonald, S.A.
6963c813-c220-4672-8094-3f58603cad9f
Hollis, D.
8d3d27b8-d460-4ca7-a592-c6804e00e031
Fu, J.
76cdabe5-fdd1-49e0-ba72-1524bca50df9
Withers, P.J.
95b52224-f306-43a5-b75f-a2828b339f77
Alderson, A.
be7a3f5c-d035-4396-b97f-a58c9199f283

Pierron, F., McDonald, S.A., Hollis, D., Fu, J., Withers, P.J. and Alderson, A. (2013) Comparison of the mechanical behaviour of standard and auxetic foams by X-ray computed tomography and digital volume correlation. Strain, 1-16. (doi:10.1111/str.12053).

Record type: Article

Abstract

The tensile behaviour of standard and auxetic polyurethane foams are contrasted by digital volume correlation of 3D images collected by in situ X-ray computed tomography (CT). It was found that subset sizes of 32 and 64 voxels for the auxetic and standard foams were optimal for strain resolutions in the order of 0.1%. For the standard foam, good uniformity of strain was observed at low strains giving a tangent Poisson's ratio of 0.5. Some heterogeneity of strain was observed at higher strains, which may be related to the fixtures. The behaviour of the auxetic foam was totally different, with strain being spatially heterogeneous with transverse strains both positive and negative but giving a negative Poisson's ratio on average. This suggests that the unfolding tendency of some groups of cells was higher than others because of the complex frozen starting microstructure. Further different methods of deriving Poisson's ratio gave different results. Besides revealing interesting microstuctural mechanisms of transverse straining, the study also shows digital volume correlation of tomography sequences to be the perfect tool to study complex mechanical behaviour of cellular materials

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e-pub ahead of print date: 2013
Organisations: Engineering Mats & Surface Engineerg Gp

Identifiers

Local EPrints ID: 357208
URI: http://eprints.soton.ac.uk/id/eprint/357208
ISSN: 1475-1305
PURE UUID: ea9221bb-c07f-4aa3-9903-91503a38fd70
ORCID for F. Pierron: ORCID iD orcid.org/0000-0003-2813-4994

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Date deposited: 07 Oct 2013 07:41
Last modified: 15 Mar 2024 03:35

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Contributors

Author: F. Pierron ORCID iD
Author: S.A. McDonald
Author: D. Hollis
Author: J. Fu
Author: P.J. Withers
Author: A. Alderson

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