A micromechanical approach to modeling the effect of impact induced damage on the vibration response of CFRP laminates
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hdl:2117/105420
Document typeConference report
Defense date2015
Rights accessRestricted access - publisher's policy
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Abstract
This work deals with modeling the effect of low-velocity impact damage upon the vibration response of CFRP laminates through a micro-mechanical description of the induced internal damage. The serial-parallel (SP) continuum approach is used to estimate the map of induced internal damage by considering the micro-structural interaction between the composite constituents and modifying their constitutive performance through a continuum damage formulation. An eigenvalue analysis is then done to determine the modal response of impacted laminates. The validity of the modeling approach to successfully reproduce the vibration response of impacted coupons is assessed through a comparison with an experimental test series conducted on a set of 48 CFRP laminated coupons. The results confirm the ability of the described approach in comparison to competing ones used to reproduce the experimentally observed behaviour.
CitationPérez, Marco A., Gil, L., Oller, S., Felippa, C. A micromechanical approach to modeling the effect of impact induced damage on the vibration response of CFRP laminates. A: International Conference on Composite Materials. "ICCM20: 20th International on Composite Materials, 19-24 july 2015, Copenhagen, Denmark: proceedings". Copenhagen: 2015, p. 1-12.
Publisher versionhttp://iccm20.org/fullpapers/file?f=Dlkm27wqZE
Collections
- Departament de Resistència de Materials i Estructures a l'Enginyeria - Ponències/Comunicacions de congressos [352]
- Departament d'Enginyeria Civil i Ambiental - Ponències/Comunicacions de congressos [1.385]
- LITEM - Laboratori per a la Innovació Tecnològica d'Estructures i Materials - Ponències/Comunicacions de congressos [33]
- RMEE - Grup de Resistència de Materials i Estructures a l'Enginyeria - Ponències/Comunicacions de congressos [52]
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