In plane compressive response and crushing of foam filled aluminium honeycombs
In this paper, the influence of foam filling of aluminium honeycomb core on its in-plane crushing properties is investigated. An aluminium honeycomb core and a polyurethane foam with densities of 65, 90, and 145 kg/m 3 were used to produce foam filled honeycomb panels, and then experimental quasi-st...
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Published in | Cellular polymers Vol. 35; no. 1; p. 46 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Sage Publications Ltd. (UK)
01.11.2015
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Subjects | |
Online Access | Get full text |
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Summary: | In this paper, the influence of foam filling of aluminium honeycomb core on its in-plane crushing properties is investigated. An aluminium honeycomb core and a polyurethane foam with densities of 65, 90, and 145 kg/m 3 were used to produce foam filled honeycomb panels, and then experimental quasi-static compression tests were performed. Moreover, finite element model, based on the conducted tests, was developed. In the finite element analyses, three different polyurethane foams were used to fill three different honeycomb cores. The effects of foam filling of aluminium honeycomb core on its in-plane mechanical properties (such as mean crushing strength, absorbed energy, and specific absorbed energy) were analysed experimentally and numerically. The results showed that the foam filling of honeycomb core can increase the in plane crushing strength up to 208 times, and its specific absorbed energy up to 20 times. However, it was found that the effect of foam filling decreases in heavier honeycombs, producing an increment of the above mentioned properties only up to 36 and 6 times, respectively. (32 ref) DOI: 10.1177/0021998314561069 |
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ISSN: | 0262-4893 1478-2421 |
DOI: | 10.1177/0021998314561069 |