Experimental investigation of the thermoelastic performance of an aerospace aluminium honeycomb composite panel

Author:

Ganilova Olga A.,Cartmell Matthew P.,Kiley Andrew

Funder

Airbus Defense and Space

Publisher

Elsevier BV

Subject

Civil and Structural Engineering,Ceramics and Composites

Reference19 articles.

1. Finckenor MM, De Groh KK (2016) A Researcher’s guide to space environmental effects. International Space Station. NASA. NP-2015-03-015-JSC. Available at: https://www.nasa.gov/connect/ebooks/researchers_guide_space_environment_detail.html (accessed 13 August 2020)

2. Spacecraft thermal control handbook;Gilmore,2002

3. Thermal analysis of thin-walled deployable composite boom in simulated space environment;Bai;Compos Struct,2017

4. Microstructure evolution of 2024 and 7A09 aluminium alloys subjected to thermal cycling in simulated LEO space environment;Lv;Mater Res Innovations,2014

5. Prediction of failure thermal cycles in graphite/epoxy composite materials under simulated low earth orbit environments;Shin;Compos B Eng,2000

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