Damage prediction in composite plates subjected to low velocity impact

dc.contributor.authorTiberkak, R.
dc.contributor.authorBachene, M.
dc.contributor.authorRechak, S.
dc.contributor.authorNecib, B.
dc.date.accessioned2015-04-12T10:44:30Z
dc.date.available2015-04-12T10:44:30Z
dc.date.issued2008
dc.description.abstractIn this investigation, fiber-reinforced composite plates subjected to low velocity impact are studied by the use of finite element analysis (FE). Mindlin’s plate theory is implemented into the FE approach in which a 9-node Lagrangian element is considered. Dynamic stress analysis is carried out by the use of a constitutive equation of composite laminates without damage. A parametric analysis shows that the increase in the percentage of the 90 plies increases the contact force implying a reduction in the rigidity of the laminate. Stresses are calculated at nine Gaussian points of each element of each interface and then averaged. At first, threshold velocities are evaluated for different stacking sequence to predict matrix crack initiation. Then, the impact induces damage at a higher impact velocity including matrix cracking is predicted by the appropriate failure criteria. The present results indicate that matrix cracking appears in the upper 90 plies with the dominance of transverse shear stressen_US
dc.identifier.urihttps://dspace.univ-boumerdes.dz/jspui/handle/123456789/278
dc.language.isoenen_US
dc.relation.ispartofseriesComposite Structures/ N°83 (2008);pp. 73–82
dc.subjectFinite element analysisen_US
dc.subjectComposite platesen_US
dc.subjectFailure criteriaen_US
dc.subjectMatrix crackingen_US
dc.subjectDelaminationen_US
dc.titleDamage prediction in composite plates subjected to low velocity impacten_US
dc.typeArticleen_US

Files

Original bundle

Now showing 1 - 1 of 1
No Thumbnail Available
Name:
Damage prediction in composite plates subjected to low velocity impact.pdf
Size:
91.49 KB
Format:
Adobe Portable Document Format

License bundle

Now showing 1 - 1 of 1
No Thumbnail Available
Name:
license.txt
Size:
1.71 KB
Format:
Item-specific license agreed upon to submission
Description: