Experimental Study of Lightning Damage Resistance of Unprotected and Protected Stitched Warp-Knit Carbon-Epoxy Composites
Abstract
10.12783/asc36/35743
Full Text:
PDFReferences
Rupke E. Lightning direct effects handbook. Pittsfield, MA: Lightning Technologies Inc.; 2002.
Aerospace recommended practice ARP5414B: Aircraft Lightning Zone. SAE International; 2005.
Al-Saleh MH, Sundararaj U. A review of vapor grown carbon nanofiber/polymer conductive
composites. Carbon. 2009;47(1):2-22.
Schauerman CM, Alvarenga J, Ganter MJ, Seager TP, Landi BJ, Raffaelle RP. Single wall carbon
nanotubes for conductive wiring. 2009 IEEE International Symposium on Sustainable Systems and
Technology: IEEE; 2009. p. 1-5.
Krishnamoorti R. Strategies for dispersing nanoparticles in polymers. MRS Bulletin.
;32(4):341-7.
Winey KI, Kashiwagi T, Mu M. Improving electrical conductivity and thermal properties of
polymers by the addition of carbon nanotubes as fillers. MRS Bulletin. 2007;32(4):348-53.
Ashrafi B, Guan J, Mirjalili V, Hubert P, Simard B, Johnston A. Correlation between Young’s
modulus and impregnation quality of epoxy-impregnated SWCNT buckypaper. Composites Part A:
Applied Science and Manufacturing. 2010;41(9):1184-91.
Inam F, Yan H, Jayaseelan DD, Peijs T, Reece MJ. Electrically conductive alumina–carbon
nanocomposites prepared by Spark Plasma Sintering. Journal of the European Ceramic Society.
;30(2):153-7.
Tang Y, Gou J. Synergistic effect on electrical conductivity of few-layer graphene/multi-walled
carbon nanotube paper. Materials Letters. 2010;64(22):2513-6.
Stankovich S, Dikin DA, Dommett GHB, Kohlhaas KM, Zimney EJ, Stach EA, Piner RD, Nguyen
ST, Ruoff RS. Graphene-based composite materials. Nature. 2006;442(7100):282-6.
Gagné M, Therriault D. Lightning strike protection of composites. Progress in Aerospace Sciences.
;64:1-16.
Alarifi IM. Investigation the conductivity of carbon fiber composites focusing on measurement
techniques under dynamic and static loads. Journal of Materials Research and Technology.
;8(5):4863-93.
Gou J, Tang Y, Liang F, Zhao Z, Firsich D, Fielding J. Carbon nanofiber paper for lightning strike
protection of composite materials. Composites Part B: Engineering. 2010;41(2):192-8.
Guo Y, Xu Y, Wang Q, Dong Q, Yi X, Jia Y. Eliminating lightning strike damage to carbon fiber
composite structures in Zone 2 of aircraft by Ni-coated carbon fiber nonwoven veils. Composites
Science and Technology. 2019;169:95-102.
Hirano Y, Yokozeki T, Ishida Y, Goto T, Takahashi T, Qian D, Ito S, Ogasawara T, Ishibashi M.
Lightning damage suppression in a carbon fiber-reinforced polymer with a polyaniline-based conductive
thermoset matrix. Composites Science and Technology. 2016;127:1-7.
Kumar SSA, Uddin MN, Rahman MM, Asmatulu R. Introducing graphene thin films into carbon
fiber composite structures for lightning strike protection. Polymer Composites. 2019;40(S1):E517-E25.
Bergan A, Bakuckas Jr JG, Lovejoy A, Jegley D, Linton K, Neal B, Korkosz G, Awerbuch J, Tan
T-M. Full-scale test and analysis results of a PRSEUS fuselage panel to assess damage containment
features. In: Proceedings of Aircraft Airworthiness & Sustainment. Baltimore, Maryland, Conference,
Conference 2012.
Jegley DC. Experimental behavior of fatigued single stiffener PRSEUS specimens. 2009.
Lacy T, Mazzola M, Kluss J, Boushab D, Gharghabi P, Lee J, Ricks T, Aniket M, Khari H. Resin
infused stitched composite development final report: Lightning strike testing on PRSEUS panels.
Boeing Technical Report; 2018.
Boushab D. Lightning damage resistance of a full-scale flat PRSEUS panel: Mississippi State
University; 2020.
DONACARBO Paper - Carbon fiber and its application products. Osaka Gas Chemicals
Corporation.
Dexmet lightning strike protection. DEXMET Corporation.
Black S. Lightning strike protection strategies for composite aircraft. CompositesWorld; 2013.
Engineers SoA. Aircraft lightning environment and related test waveforms. Aerospace
Recommended Practice ARP 5412: SAE International; 1999. p. 53.
Martins RS. Experimental and theoretical studies of lightning arcs and their interaction with
aeronautical materials: UNIVERSITE PARIS-SACLAY; 2016.
Kawakami H. Lightning strike induced damage mechanisms of carbon fiber composites: University
of Washington; 2011.
Feraboli P, Miller M. Damage resistance and tolerance of carbon/epoxy composite coupons
subjected to simulated lightning strike. Composites Part A: Applied Science and Manufacturing.
;40(6-7):954-67.
Refbacks
- There are currently no refbacks.