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dc.contributor.authorMehdikhani, Mahoor
dc.contributor.authorMatveeva, Anna
dc.contributor.authorLomov, Stepan V.
dc.contributor.authorGorbatikh, Larissa
dc.contributor.authorAravand, Mohammadali
dc.contributor.authorWardle, Brian L
dc.date.accessioned2018-04-20T19:32:07Z
dc.date.available2018-04-20T19:32:07Z
dc.date.issued2016-10
dc.date.submitted2016-10
dc.identifier.issn0266-3538
dc.identifier.urihttp://hdl.handle.net/1721.1/114827
dc.description.abstractFor the first time, micro-scale digital image correlation (μDIC) is investigated for measurement of strain fields in hierarchical fiber-reinforced composites. The methodology is developed on an exemplary alumina fiber/epoxy composite laminate with aligned carbon nanotubes (A-CNTs) grown on fibers. Utilizing environmental scanning electron microscopy and nano-scale random speckle patterns, sufficient precision is achieved to detect the influence of the A-CNTs on the deformation field around the fibers. Debonded regions at the fiber/matrix interface with openings as small as 35 nm could be detected. μDIC could identify the propagation of the debonded region based on the non-linear increase of the opening. The image correlation uncertainty in the displacement analysis is estimated to be below 5 nm. The experimental results are validated by computational analysis performed on the region of interest. For this, an advanced model with two scales of reinforcement (microscopic fibers and nanotubes) and boundary conditions taken from the experiment is used. As verified by the model, A-CNTs are found to constrain matrix deformation in their longitudinal direction. Keywords: Digital image correlation (DIC); Scanning electron microscopy (SEM); Carbon nanotubes; Mechanical properties; Finite element analysis (FEA)en_US
dc.publisherElsevier BVen_US
dc.relation.isversionofhttp://dx.doi.org/10.1016/J.COMPSCITECH.2016.10.021en_US
dc.rightsCreative Commons Attribution-NonCommercial-NoDerivs Licenseen_US
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/en_US
dc.sourceOther repositoryen_US
dc.titleStrain mapping at the micro-scale in hierarchical polymer composites with aligned carbon nanotube grafted fibersen_US
dc.typeArticleen_US
dc.identifier.citationMehdikhani, Mahoor et al. “Strain Mapping at the Micro-Scale in Hierarchical Polymer Composites with Aligned Carbon Nanotube Grafted Fibers.” Composites Science and Technology 137 (December 2016): 24–34 © 2016 Elsevier Ltden_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Aeronautics and Astronauticsen_US
dc.contributor.mitauthorAravand, Mohammadali
dc.contributor.mitauthorWardle, Brian L
dc.relation.journalComposites Science and Technologyen_US
dc.eprint.versionAuthor's final manuscripten_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2018-04-20T12:09:13Z
dspace.orderedauthorsMehdikhani, Mahoor; Matveeva, Anna; Aravand, M. Ali; Wardle, Brian L.; Lomov, Stepan V.; Gorbatikh, Larissaen_US
dspace.embargo.termsNen_US
dc.identifier.orcidhttps://orcid.org/0000-0003-3530-5819
mit.licensePUBLISHER_CCen_US


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