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dc.contributor.authorRay, M. C.
dc.contributor.authorGuzman de Villoria, Roberto
dc.contributor.authorWardle, Brian L.
dc.date.accessioned2012-07-26T19:30:53Z
dc.date.available2012-07-26T19:30:53Z
dc.date.issued2009-01
dc.identifier.issn1070-9789
dc.identifier.urihttp://hdl.handle.net/1721.1/71852
dc.description.abstractA novel shortfiber composite in which the microscopic advanced fiber reinforcements are coated with radially aligned carbon nanotubes (CNTs) is analyzed in this study. A shear-lag model is developed to analyze the load transferred to such coated fibers from the aligned-CNT reinforced matrix in a hybrid composite application. It is found that if the carbon fibers are coated with radially aligned CNTs, then the axial load transferred to the fiber is reduced due to stiffening of the matrix by the CNTs. Importantly, it is shown that at low loading of CNTs in the polymer matrix, there is a significant reduction in the maximum interfacial shear stress, e.g., at 1% CNTs, there is an ~25 % reduction in this maximum stress. Further, the modification in the load sharing between the fiber and the matrix plateaus at ~2% CNT matrix loading, indicating a small but critical window for engineering the interface in this manner. Effects of the variation of the aspect ratio of the fiber, CNT volume fraction and the application of radial load on the load transferred to such CNT coated fibers are also investigated.en_US
dc.language.isoen_US
dc.publisherSociety for the Advancement of Material and Process Engineeringen_US
dc.relation.isversionofhttp://www.sampe.org/news/jam/2009/2009jamissue4.aspxen_US
dc.rightsCreative Commons Attribution-Noncommercial-Share Alike 3.0en_US
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/3.0/en_US
dc.sourceGuzman de Villloriaen_US
dc.titleLoad Transfer Analysis in Short Carbon Fibers with Radially-Aligned Carbon Nanotubes Embedded in a Polymer Matrixen_US
dc.typeArticleen_US
dc.identifier.citationRay, M.C., Roberto Guzman de Villoria and brian L. Wardle. "Load Transfer Analysis in Short Carbon Fibers with Radially-Aligned Carbon Nanotubes Embedded in a Polymer Matrix." Journal of Advanced Materials, issue 4, (Jan. 2009).en_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Aeronautics and Astronauticsen_US
dc.contributor.approverWardle, Brian L.
dc.contributor.mitauthorGuzman de Villoria, Roberto
dc.contributor.mitauthorWardle, Brian L.
dc.relation.journalJournal of Advanced Materialsen_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
dspace.orderedauthorsRay, M.C.; Guzman de Villoria, Roberto; Wardle, Brian L.en_US
dc.identifier.orcidhttps://orcid.org/0000-0003-3530-5819
mit.licenseOPEN_ACCESS_POLICYen_US
mit.metadata.statusComplete


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