Single-walled carbon nanotube-modified epoxy thin films for continuous crack monitoring of metallic structures

From National Research Council Canada

DOIResolve DOI: https://doi.org/10.1177/1475921712449509
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Affiliation
  1. National Research Council of Canada. Aerospace
  2. National Research Council of Canada. NRC Steacie Institute for Molecular Sciences
FormatText, Article
SubjectAccurate measurement; Catastrophic failures; Continuous monitoring; Crack evolution; Crack length; Crack monitoring; Crack sensors; Crack sizes; Crack surfaces; Current change; Electrical discharge machining; Epoxy nanocomposites; Fatigue cycles; Gauge factors; Growth monitoring; Host structure; Linear correlation; Maximum load; Measured currents; Metallic hosts; Metallic structures; Nanocomposite thin films; Single-walled carbon; Small load; Stable modes; Strain sensing; Visual inspection; Aluminum; Carbon nanotubes; Crack detection; Epoxy resins; Fatigue testing; Mechanical properties; Nanocomposite films; Nanocomposites; Sensors; Single-walled carbon nanotubes (SWCN); Structural health monitoring; Cracks
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LanguageEnglish
Peer reviewedYes
NPARC number21269393
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Record identifier54bcefca-a988-4609-8cbf-ad61697452cd
Record created2013-12-12
Record modified2020-04-21
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