Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex

Graphene is a new type of carbon material with excellent performance. It not only has good electrical, mechanical and thermal properties, but also can be used as a filler of natural latex materials to optimize the thermal conductivity of natural latex materials. Therefore, graphene is widely used in...

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Main Authors: Li Lin, Huang Wen, Ma Yingchao, Hou Chaoping
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/05/e3sconf_iaecst2020_02074.pdf
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spelling doaj-ad8649de04f24004ae1a2fcd30bc24222021-04-02T12:57:12ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011450207410.1051/e3sconf/202014502074e3sconf_iaecst2020_02074Experimental study on the effect of graphene on the thermal conductivity of natural rubber latexLi Lin0Huang Wen1Ma Yingchao2Hou ChaopingDujiangyan Yunminongqing Science and Technology Co. LTD.Dujiangyan Yunminongqing Science and Technology Co. LTD.Dujiangyan Yunminongqing Science and Technology Co. LTD.Graphene is a new type of carbon material with excellent performance. It not only has good electrical, mechanical and thermal properties, but also can be used as a filler of natural latex materials to optimize the thermal conductivity of natural latex materials. Therefore, graphene is widely used in aviation, automobile, machinery and other fields. In order to study the influence of the coordination ratio of graphene and rubber materials on the thermal conductivity, the natural rubber latex was first diluted and dissolved with volatile organic solvent toluene; then 0g, 0.5g, 1g, 1.5g, 2g, and graphene were respectively mixed into 20g natural rubber latex to prepare 6 thin samples (type I, type II, type III, type IV, type V, type VI). Finally, the thermal conductivity of 6 samples was measured by fla laser thermal conductivity instrument. The results showed that with the increase of graphene dosage, the thermal conductivity of natural rubber latex sheet increased significantly; when the ratio of graphene dosage to natural rubber latex was about 1:10, the rate of improving thermal conductivity of natural rubber latex decreased.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/05/e3sconf_iaecst2020_02074.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Li Lin
Huang Wen
Ma Yingchao
Hou Chaoping
spellingShingle Li Lin
Huang Wen
Ma Yingchao
Hou Chaoping
Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
E3S Web of Conferences
author_facet Li Lin
Huang Wen
Ma Yingchao
Hou Chaoping
author_sort Li Lin
title Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
title_short Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
title_full Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
title_fullStr Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
title_full_unstemmed Experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
title_sort experimental study on the effect of graphene on the thermal conductivity of natural rubber latex
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description Graphene is a new type of carbon material with excellent performance. It not only has good electrical, mechanical and thermal properties, but also can be used as a filler of natural latex materials to optimize the thermal conductivity of natural latex materials. Therefore, graphene is widely used in aviation, automobile, machinery and other fields. In order to study the influence of the coordination ratio of graphene and rubber materials on the thermal conductivity, the natural rubber latex was first diluted and dissolved with volatile organic solvent toluene; then 0g, 0.5g, 1g, 1.5g, 2g, and graphene were respectively mixed into 20g natural rubber latex to prepare 6 thin samples (type I, type II, type III, type IV, type V, type VI). Finally, the thermal conductivity of 6 samples was measured by fla laser thermal conductivity instrument. The results showed that with the increase of graphene dosage, the thermal conductivity of natural rubber latex sheet increased significantly; when the ratio of graphene dosage to natural rubber latex was about 1:10, the rate of improving thermal conductivity of natural rubber latex decreased.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/05/e3sconf_iaecst2020_02074.pdf
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AT houchaoping experimentalstudyontheeffectofgrapheneonthethermalconductivityofnaturalrubberlatex
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