Abstract
AbstractThis study considers the influence of different irradiation scenarios on the thermal degradation of carbon fibre-reinforced polymers (CFRP). Real threats are simulated, such as fires with long-lasting low heat fluxes and nuclear heat flashes with short-lasting high heat fluxes. For this purpose, coated and uncoated quasi-isotropic samples of the commercially available CFRP HexPly®8552/IM7 are thermally irradiated from one side by an electrical heater of a cone calorimeter and a xenon short-arc lamp of a laboratory heat flash simulator with heat fluxes between 5 and 175 W/cm2at varying time intervals. The specimens’ temperature is recorded on the front and back side as well as at different laminate depths. The CFRP are analyzed with ultrasonic testing (UT), infrared spectroscopy (ATR-FTIR), scanning electron microscopy (SEM) and micro-focused computed X-Ray tomography (μCT). Destructive tests are performed to determine the mechanical properties in terms of interlaminar shear, compressive and tensile strength. When samples of CFRP are exposed to higher heat flux, high temperatures and temperature gradient values occur along the cross-section. As a result, extreme damage gradients appear in the material, leading to changes in damage behavior and loss of mechanical properties within seconds. However, to ensure the safety of the material in case of thermal exposure, loading limits are introduced, indicating the threshold for strength collapse. In addition, with the application of coatings, thermal degradation of CFRP can be delayed. Finally, the time-heat flux superposition principle is established to predict the residual strength under different loading scenarios.
Funder
Projekt DEAL of the Universität der Bundeswehr München
Universität der Bundeswehr München
Publisher
Springer Science and Business Media LLC
Reference59 articles.
1. Soutis, C.: Carbon fiber reinforced plastics in aircraft construction. Mater. Sci. Eng. A 412, 171–176 (2005)
2. Clyne, T.W., Hull, D.: An Introduction to Composite Materials; 3rd ed.; Cambridge University Press, ISBN 9781139050586 (2019)
3. Sauer, M., Kühnel, M., Witten, E.: Report - Composites Market Report 2018 - Market developments, trends, outlook and challenges. Available online: www.carbon-connected.de (accessed on 7 Apr 2020).
4. Eurofighter Jagdflugzeug GmbH.: Technical Guide - Eurofighter Typhoon. Available online: www.eurofighter.com (accessed on 27 Apr 2020).
5. Neitzel, M., Breuer, U., Mitschang, P.: Handbuch Verbundwerkstoffe - Werkstoffe, Verarbeitung, Anwendung; 2nd ed.; Carl Hanser Verlag, ISBN 978–3446436961 (2014)
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献