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Identification of material parameters of PVC foams using digital image correlation and the virtual fields method

Identification of material parameters of PVC foams using digital image correlation and the virtual fields method
Identification of material parameters of PVC foams using digital image correlation and the virtual fields method
This paper presents an effective methodology to characterize all the constitutive (elastic) parameters of an orthotropic polymeric foam material (Divinycell H100) in one single test using Digital Image Correlation (DIC) in combination with the Virtual Fields Method (VFM). A modified Arcan fixture is used to induce various loading conditions ranging from pure shear or axial loading in tension or compression to bidirectional loading. A numerical optimization study was performed with different loading angles of the Arcan test fixture and off-axis angles of the principal material axes. The objective is to identify the configuration that gives the minimum sensitivity to noise and missing data on the specimen edges, which are the two major issues when identifying the stiffness components from actual DIC measurements. Two optimized Arcan test configurations were chosen. The experimental results obtained for these two optimized test configurations show a significant improvement of the measurement accuracy compared with a pure shear load configuration. The larger sensitivity of the pure shear test to missing data as opposed to the tensile test is also evident from the experimental data and confirms the analysis from the optimization study. The recovery of missing data along the specimen edges is a promising way to further improve the identification results.
1741-2765
1001-1015
Wang, P.
df957848-e6e4-45f0-ba01-2d966a30aa67
Pierron, F.
a1fb4a70-6f34-4625-bc23-fcb6996b79b4
Thomsen, O.T.
f3e60b22-a09f-4d58-90da-d58e37d68047
Wang, P.
df957848-e6e4-45f0-ba01-2d966a30aa67
Pierron, F.
a1fb4a70-6f34-4625-bc23-fcb6996b79b4
Thomsen, O.T.
f3e60b22-a09f-4d58-90da-d58e37d68047

Wang, P., Pierron, F. and Thomsen, O.T. (2013) Identification of material parameters of PVC foams using digital image correlation and the virtual fields method. Experimental Mechanics, 53 (6), 1001-1015. (doi:10.1007/s11340-012-9703-4).

Record type: Article

Abstract

This paper presents an effective methodology to characterize all the constitutive (elastic) parameters of an orthotropic polymeric foam material (Divinycell H100) in one single test using Digital Image Correlation (DIC) in combination with the Virtual Fields Method (VFM). A modified Arcan fixture is used to induce various loading conditions ranging from pure shear or axial loading in tension or compression to bidirectional loading. A numerical optimization study was performed with different loading angles of the Arcan test fixture and off-axis angles of the principal material axes. The objective is to identify the configuration that gives the minimum sensitivity to noise and missing data on the specimen edges, which are the two major issues when identifying the stiffness components from actual DIC measurements. Two optimized Arcan test configurations were chosen. The experimental results obtained for these two optimized test configurations show a significant improvement of the measurement accuracy compared with a pure shear load configuration. The larger sensitivity of the pure shear test to missing data as opposed to the tensile test is also evident from the experimental data and confirms the analysis from the optimization study. The recovery of missing data along the specimen edges is a promising way to further improve the identification results.

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More information

Published date: July 2013
Organisations: Engineering Mats & Surface Engineerg Gp

Identifiers

Local EPrints ID: 357205
URI: http://eprints.soton.ac.uk/id/eprint/357205
ISSN: 1741-2765
PURE UUID: f02ee5b2-bb51-4bbe-b6ed-98d97f1c5383
ORCID for F. Pierron: ORCID iD orcid.org/0000-0003-2813-4994

Catalogue record

Date deposited: 07 Oct 2013 07:59
Last modified: 15 Mar 2024 03:35

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Contributors

Author: P. Wang
Author: F. Pierron ORCID iD
Author: O.T. Thomsen

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