Laminated composite structures, during their service life, can be exposed to low velocity impact events which can induce internal damage hardly detectable by visual inspections. This internal damage can cause reductions in strength by propagating under loading conditions[1-7]. In this paper, focused on impact induced damage formation and evolution in laminated composite structures, simulations have been performed, which takes into account the on-set and the growth of intra-laminar and inter-laminar damages in composite panels undergoing an impact event and a post-impact compressive load, by adopting a combination of explicit-implicit numerical approaches.

Numerical Simulations of Low Velocity Impact Damage Onset and Evolution in Carbon Composite Laminates

Zarrelli M;
2013

Abstract

Laminated composite structures, during their service life, can be exposed to low velocity impact events which can induce internal damage hardly detectable by visual inspections. This internal damage can cause reductions in strength by propagating under loading conditions[1-7]. In this paper, focused on impact induced damage formation and evolution in laminated composite structures, simulations have been performed, which takes into account the on-set and the growth of intra-laminar and inter-laminar damages in composite panels undergoing an impact event and a post-impact compressive load, by adopting a combination of explicit-implicit numerical approaches.
2013
Inglese
ICCST-9 International Conference On Composite Science And Technology: 2020
21
32
12
978-1-60595-113-3
DEStech Publications, Inc.
Lancaster PA
STATI UNITI D'AMERICA
Sì, ma tipo non specificato
24-26/05/2013
Naples
impact tests
composite materials
Finite Elements
2
none
Riccio, A.; Di Felice, G.; Caputo, F.; Lamanna, G.; Zarrelli, M.; Antonucci, E.; Lopresto, V.
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/422812
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