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Thermal Properties of Carbon/Epoxy Resin Composites Based on the Template of Artificial Sponge

Artificial sponge was used as the template to produce carbon/epoxy resin composites with interpenetrating network structure. Carbon with a network structure was first obtained by the pyrolysis of sponge. The composites were then obtained by injecting epoxy resin into the carbon. Their microstructure... Full description

Journal Title: Advanced materials research 2012-08-24, Vol.560-561, p.129-133
Main Author: Wang, Tian Chi
Other Authors: Wong, Ching Ping , Chang, Li Jing
Format: Electronic Article Electronic Article
Language: English
ID: ISSN: 1022-6680
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recordid: cdi_crossref_primary_10_4028_www_scientific_net_AMR_560_561_129
title: Thermal Properties of Carbon/Epoxy Resin Composites Based on the Template of Artificial Sponge
format: Article
creator:
  • Wang, Tian Chi
  • Wong, Ching Ping
  • Chang, Li Jing
ispartof: Advanced materials research, 2012-08-24, Vol.560-561, p.129-133
description: Artificial sponge was used as the template to produce carbon/epoxy resin composites with interpenetrating network structure. Carbon with a network structure was first obtained by the pyrolysis of sponge. The composites were then obtained by injecting epoxy resin into the carbon. Their microstructures, thermal diffusivity, and thermal expansions were analyzed. The results show that the structure of sponge controlled the interpenetrating network structures of the carbon/epoxy resin composites. The composites exhibit a lower coefficient of thermal expansion and a high thermal diffusivity than the epoxy resin.
language: eng
source:
identifier: ISSN: 1022-6680
fulltext: no_fulltext
issn:
  • 1022-6680
  • 1662-8985
  • 1662-8985
url: Link


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titleThermal Properties of Carbon/Epoxy Resin Composites Based on the Template of Artificial Sponge
creatorWang, Tian Chi ; Wong, Ching Ping ; Chang, Li Jing
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descriptionArtificial sponge was used as the template to produce carbon/epoxy resin composites with interpenetrating network structure. Carbon with a network structure was first obtained by the pyrolysis of sponge. The composites were then obtained by injecting epoxy resin into the carbon. Their microstructures, thermal diffusivity, and thermal expansions were analyzed. The results show that the structure of sponge controlled the interpenetrating network structures of the carbon/epoxy resin composites. The composites exhibit a lower coefficient of thermal expansion and a high thermal diffusivity than the epoxy resin.
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descriptionArtificial sponge was used as the template to produce carbon/epoxy resin composites with interpenetrating network structure. Carbon with a network structure was first obtained by the pyrolysis of sponge. The composites were then obtained by injecting epoxy resin into the carbon. Their microstructures, thermal diffusivity, and thermal expansions were analyzed. The results show that the structure of sponge controlled the interpenetrating network structures of the carbon/epoxy resin composites. The composites exhibit a lower coefficient of thermal expansion and a high thermal diffusivity than the epoxy resin.
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abstractArtificial sponge was used as the template to produce carbon/epoxy resin composites with interpenetrating network structure. Carbon with a network structure was first obtained by the pyrolysis of sponge. The composites were then obtained by injecting epoxy resin into the carbon. Their microstructures, thermal diffusivity, and thermal expansions were analyzed. The results show that the structure of sponge controlled the interpenetrating network structures of the carbon/epoxy resin composites. The composites exhibit a lower coefficient of thermal expansion and a high thermal diffusivity than the epoxy resin.
doi10.4028/www.scientific.net/AMR.560-561.129