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Oriented nanofibers embedded in a polymer matrixA method of forming a composite of embedded nanofibers in a polymer matrix is disclosed. The method includes incorporating nanofibers in a plastic matrix forming agglomerates, and uniformly distributing the nanofibers by exposing the agglomerates to hydrodynamic stresses. The hydrodynamic said stresses force the agglomerates to break apart. In combination or additionally elongational flow is used to achieve small diameters and alignment. A nanofiber reinforced polymer composite system is disclosed. The system includes a plurality of nanofibers that are embedded in polymer matrices in micron size fibers. A method for producing nanotube continuous fibers is disclosed. Nanofibers are fibrils with diameters of 100 nm, multiwall nanotubes, single wall nanotubes and their various functionalized and derivatized forms. The method includes mixing a nanofiber in a polymer; and inducing an orientation of the nanofibers that enables the nanofibers to be used to enhance mechanical, thermal and electrical properties. Orientation is induced by high shear mixing and elongational flow, singly or in combination. The polymer may be removed from said nanofibers, leaving micron size fibers of aligned nanofibers.
Document ID
20110008776
Acquisition Source
Johnson Space Center
Document Type
Other - Patent
Authors
Barrera, Enrique V.
Rodriguez-Macias, Fernando J.
Lozano, Karen
Chibante, Luis Paulo Felipe
Stewart, David Harris
Date Acquired
August 25, 2013
Publication Date
March 1, 2011
Subject Category
Composite Materials
Report/Patent Number
Patent Application Number: US-Patent-Appl-SN-12/025,626
Patent Number: US-Patent-7,897,248
Funding Number(s)
CONTRACT_GRANT: NAS9-99129
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-Patent-7,897,248
Patent Application
US-Patent-Appl-SN-12/025,626
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