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The effect of temperature on the failure modes of polymer foam cored sandwich structures

The effect of temperature on the failure modes of polymer foam cored sandwich structures
The effect of temperature on the failure modes of polymer foam cored sandwich structures
The influence of elevated temperature on the stability of sandwich structures is investigated. A new analytical solution is proposed that enables the calculation of the critical wrinkling stress in sandwich beams subjected to load and elevated temperatures. The effect of a through thickness temperature gradient is accounted for by imposing different stiffnesses of the core for the different temperatures. The sandwich beam studied in the paper is loaded in a simply supported four-point bending configuration, where one of the face sheets is heated. The experimental approach utilises high-speed imaging where the strains are calculated from measured displacements obtained from digital image correlation (DIC). A shift of the failure mode from face sheet yielding to face sheet wrinkling is observed with increasing temperatures. The results from the new analytical method agree well with corresponding experimental results. Finite element analysis is also conducted, which shows excellent correspondence with the theory and the experimental data. The work clearly demonstrates that under certain conditions the load response of the sandwich beam can become nonlinear and unstable, and hence will fail well below face sheet yielding load because of the loss of stiffness of the core material.
foam cored sandwich structures, thermal degradation, failure modes, wrinkling
0263-8223
104-113
Zhang, S.
76640b2c-83c0-4a90-bcd8-939ffb2505aa
Dulieu-Barton, J.M.
9e35bebb-2185-4d16-a1bc-bb8f20e06632
Thomsen, O.T.
f3e60b22-a09f-4d58-90da-d58e37d68047
Zhang, S.
76640b2c-83c0-4a90-bcd8-939ffb2505aa
Dulieu-Barton, J.M.
9e35bebb-2185-4d16-a1bc-bb8f20e06632
Thomsen, O.T.
f3e60b22-a09f-4d58-90da-d58e37d68047

Zhang, S., Dulieu-Barton, J.M. and Thomsen, O.T. (2015) The effect of temperature on the failure modes of polymer foam cored sandwich structures. Composite Structures, 121, 104-113. (doi:10.1016/j.compstruct.2014.10.032).

Record type: Article

Abstract

The influence of elevated temperature on the stability of sandwich structures is investigated. A new analytical solution is proposed that enables the calculation of the critical wrinkling stress in sandwich beams subjected to load and elevated temperatures. The effect of a through thickness temperature gradient is accounted for by imposing different stiffnesses of the core for the different temperatures. The sandwich beam studied in the paper is loaded in a simply supported four-point bending configuration, where one of the face sheets is heated. The experimental approach utilises high-speed imaging where the strains are calculated from measured displacements obtained from digital image correlation (DIC). A shift of the failure mode from face sheet yielding to face sheet wrinkling is observed with increasing temperatures. The results from the new analytical method agree well with corresponding experimental results. Finite element analysis is also conducted, which shows excellent correspondence with the theory and the experimental data. The work clearly demonstrates that under certain conditions the load response of the sandwich beam can become nonlinear and unstable, and hence will fail well below face sheet yielding load because of the loss of stiffness of the core material.

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Zhang et al COST 2015 eprints.pdf - Accepted Manuscript
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More information

e-pub ahead of print date: 1 November 2014
Published date: March 2015
Keywords: foam cored sandwich structures, thermal degradation, failure modes, wrinkling
Organisations: Engineering Mats & Surface Engineerg Gp

Identifiers

Local EPrints ID: 378351
URI: http://eprints.soton.ac.uk/id/eprint/378351
ISSN: 0263-8223
PURE UUID: 761d7a11-31ea-4fdb-8522-7b5e53fab84e

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Date deposited: 01 Jul 2015 16:13
Last modified: 14 Mar 2024 20:21

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Contributors

Author: S. Zhang
Author: O.T. Thomsen

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