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dc.contributor.advisorNaraghi, Mohammad
dc.creatorSumit, FNU
dc.date.accessioned2020-08-26T20:00:51Z
dc.date.available2020-08-26T20:00:51Z
dc.date.created2019-12
dc.date.issued2019-11-18
dc.date.submittedDecember 2019
dc.identifier.urihttps://hdl.handle.net/1969.1/188804
dc.description.abstractFlexible carbon nanosprings and wavy nanofibers can be used in micro and nanoelectromechanical system devices, deployable structures, flexible displays, energy storage, catalysis, nanocomposites and a multitude of other uses. A novel method to produce wavy and helical carbon nanofibers (CNFs) is presented here. The CNFs with controlled geometry were fabricated via pyrolysis of electrospun polyacrylonitrile (PAN) nanofibers as the precursor. The waviness/helicity of nanofibers was achieved by subjecting the precursor nanofibers to constraint buckling inside a thermally shrinking matrix. The much higher tendency of the matrix to shrink, compared to PAN nanofibers, was achieved by controlling the microstructure and crystallinity of the precursors. The formation of the wavy/helical geometry was explained quantitatively via mechanistic models, by minimizing the total mechanical energy stored in the PAN-matrix system during the matrix shrinkage. Despite its simplicity in considering elastic deformations only, the model provided reasonably quantitative matching with the experiments. Compared to existing methods in generating wavy/helical nanofibers, such as chemical vapor deposition growth methods, our method provides a more controllable geometry which is suitable for large scale production of aligned buckled CNFs.en
dc.format.mimetypeapplication/pdf
dc.language.isoen
dc.subjectMicrobucklingen
dc.subjectWavy nanofibersen
dc.subjectHelical nanofibersen
dc.subjectNanocoilsen
dc.subjectNanospringsen
dc.titleFORMATION OF CARBON NANOSPRINGS VIA PRECURSOR CONSTRAINED FIBER MICROBUCKLINGen
dc.typeThesisen
thesis.degree.departmentAerospace Engineeringen
thesis.degree.disciplineAerospace Engineeringen
thesis.degree.grantorTexas A&M Universityen
thesis.degree.nameMaster of Scienceen
thesis.degree.levelMastersen
dc.contributor.committeeMemberKinra, Vikram
dc.contributor.committeeMemberPharr, Matt
dc.type.materialtexten
dc.date.updated2020-08-26T20:00:52Z
local.etdauthor.orcid0000-0002-0760-1998


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