Electrical and thermal behavior of the carbon fiber polymer matrix composites subjected to time-varying and steady electric currents is studied. A fully automated experimental setup for real time measurements of the electric current, resistance, voltage, and temperature in carbon fiber polymer matrix composites has been developed. A series of electrical characterization tests on IM7/977-3 unidirectional and symmetric cross-ply composite laminates have been performed and the effects of electric current magnitude and duration, electrical resistance, and associated thermal effects have been investigated. It is determined that voltage-current relationship stays ohmic for up to 50 A steady currents, electrical resistance exhibits time-dependent behavior. It is also found that application of an electric current leads to a significant temperature rise in the composites that is a result of the intense Joule heat produced in the electrically conductive carbon fibers as well as in the composite-electrode contact.
Thesis
Electrical and thermal behavior of Im7/977-3 Carbon fiber polymer matrix composites subjected to time-varying and steady electric currents
University of Iowa
Master of Science (MS), University of Iowa
Autumn 2010
DOI: 10.17077/etd.0p2k8wkw
Free to read and download, Open Access
Abstract
Details
- Title: Subtitle
- Electrical and thermal behavior of Im7/977-3 Carbon fiber polymer matrix composites subjected to time-varying and steady electric currents
- Creators
- Phillip Eugene Deierling - University of Iowa
- Contributors
- Olesya I. Zhupanska (Advisor)Albert Ratner (Committee Member)Jia Lu (Committee Member)
- Resource Type
- Thesis
- Degree Awarded
- Master of Science (MS), University of Iowa
- Degree in
- Mechanical Engineering
- Date degree season
- Autumn 2010
- Publisher
- University of Iowa
- DOI
- 10.17077/etd.0p2k8wkw
- Number of pages
- xiv, 159 pages
- Copyright
- Copyright 2010 Phillip Deierling
- Language
- English
- Description bibliographic
- Includes bibliographical references (pages 156-159).
- Academic Unit
- Mechanical Engineering
- Record Identifier
- 9983776613402771
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