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INTERFACIAL ADHESION AND ELECTRICAL PROPERTIES OF MWCNT IN POLYURETHANE NANOCOMPOSITES COATING VIA ELECTRICAL RESISTANCE MAPPING FOR COMPOSITE AIRCRAFT TOPCOAT

Authors
Park, Joung-ManKim, Jong-HyunKwon, Dong-JunLim, Hyung-MiDeVries, K. Lawrence
Issue Date
May-2024
Publisher
Soc. for the Advancement of Material and Process Engineering
Keywords
2D electrical resistance mapping; Aircraft topcoat; dispersion; Interfacial adhesion; MWCNT/PU nanocomposite coating
Citation
International SAMPE Technical Conference, v.2024-May
Indexed
SCOPUS
Journal Title
International SAMPE Technical Conference
Volume
2024-May
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74036
DOI
10.33599/nasampe/s.24.0070
ISSN
0892-2624
Abstract
Interfacial, adhesion and electrical properties of polyurethane (PU)-type aircraft topcoat layers for lightning strike protection (LSP) was evaluated by 2D electrical resistance (ER) mapping with different oxidation times. Multi-wall carbon nanotubes (MWCNT) were treated using hydrogen peroxide to improve dispersion. Mechanical property of MWCNT/PU topcoat was determined via thin film tensile test, and oxidation degree was determined using TGA and EDS. Static contact angle measurements were used to evaluate work of adhesion between MWCNT and PU coating layer. Interfacial adhesion between MWCNT and PU coating layer was obtained via pull-out test and both results were consistent with different MWCNT oxidation times. Electrical properties of MWCNT/PU topcoats were evaluated by surface ER. Surface ER was the lowest at 5 days oxidation times. Higher tensile strength of MWCNT/PU topcoat could contribute to higher interfacial adhesion. Visualization was used to determine MWCNT dispersion and verified successfully using the color variation of 2D ER mapping. Some anti-icing and de-icing outcomes for aircraft topcoat were also introduced comparing with LSP result. © 2024 Soc. for the Advancement of Material and Process Engineering. All rights reserved.
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공과대학 > School of Materials Science&Engineering > Journal Articles
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Park, Joung Man
공과대학 (나노신소재공학부고분자공학전공)
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