Lightning Strike Ablation Damage Influence Factors Analysis of Carbon Fiber/Epoxy Composite Based on Coupled Electrical-Thermal Simulation

Author:

Yin J.J.,Chang F.,Li S.L.,Yao X.L.,Sun J.R.,Xiao Y.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Ceramics and Composites

Reference24 articles.

1. Miller, A.: The Boeing 787 dreamliner. Keynote address. In: 22nd American society for composites technical conference, Seattle, WA; September. (2007)

2. Mall, S., Ouper, B.L., Fielding, J.C.: Compression strength degradation of nanocomposites after lightning strike. J. Compos. Mater. 00, 1–15 (2009)

3. Larsson, A., Delannoy, A., Lalande, P.: Voltage drop along a lightning channel during strikes to aircraft. Atmos. Res. 76, 377–385 (2005)

4. Gagne, M., Therriault, D.: Lightning strike protection of composites. Prog. Aerosp. Sci. 64, 1–16 (2014)

5. Wang, F.S., Ji, Y.Y., Yu, X.S.: Ablation damage assessment of aircraft carbon fiber/epoxy composite and its protection structures suffered from lightning strike. Compos. Struct. 145, 226–241 (2016)

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