Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers
Carbon fiber reinforced composite materials have become commonplace in many industries including aerospace, automotive, and sporting goods. Previous research has determined a coupling relationship between the mechanical and electrical properties of these materials...
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ndltd-uiowa.edu-oai-ir.uiowa.edu-etd-30412019-10-13T04:57:34Z Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers Hill, Christopher Brandon Carbon fiber reinforced composite materials have become commonplace in many industries including aerospace, automotive, and sporting goods. Previous research has determined a coupling relationship between the mechanical and electrical properties of these materials where the application of electrical current has been shown to improve their mechanical strengths. The next generations of these composites have started to be produced with the addition of nanocarbon buckypaper layers which provide even greater strength and electrical conductivity potentials. The focus of this current research was to characterize these new composites and compare their electro-mechanical coupling capabilities to those composites which do not contain any nonocarbons. 2012-05-01T07:00:00Z thesis application/pdf https://ir.uiowa.edu/etd/2894 https://ir.uiowa.edu/cgi/viewcontent.cgi?article=3041&context=etd Copyright 2012 Christopher Brandon Hill Theses and Dissertations eng University of IowaZhupanska, Olesya I. Mechanical Engineering |
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English |
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Mechanical Engineering Hill, Christopher Brandon Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
description |
Carbon fiber reinforced composite materials have become commonplace in many industries including aerospace, automotive, and sporting goods. Previous research has determined a coupling relationship between the mechanical and electrical properties of these materials where the application of electrical current has been shown to improve their mechanical strengths. The next generations of these composites have started to be produced with the addition of nanocarbon buckypaper layers which provide even greater strength and electrical conductivity potentials. The focus of this current research was to characterize these new composites and compare their electro-mechanical coupling capabilities to those composites which do not contain any nonocarbons. |
author2 |
Zhupanska, Olesya I. |
author_facet |
Zhupanska, Olesya I. Hill, Christopher Brandon |
author |
Hill, Christopher Brandon |
author_sort |
Hill, Christopher Brandon |
title |
Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
title_short |
Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
title_full |
Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
title_fullStr |
Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
title_full_unstemmed |
Investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
title_sort |
investigation of electrical and impact properties of carbon fiber reinforced polymer matrix composites with carbon nanotube buckypaper layers |
publisher |
University of Iowa |
publishDate |
2012 |
url |
https://ir.uiowa.edu/etd/2894 https://ir.uiowa.edu/cgi/viewcontent.cgi?article=3041&context=etd |
work_keys_str_mv |
AT hillchristopherbrandon investigationofelectricalandimpactpropertiesofcarbonfiberreinforcedpolymermatrixcompositeswithcarbonnanotubebuckypaperlayers |
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1719265116351889408 |