Heating Characteristics of Films Prepared with Polymer-Graphite Composites

Heating films were prepared by using poly(methyl methacrylate) and polybutadiene composites containing graphite. The heating film was prepared by casting the as-made polymer composite on the PET film. Copper electrodes were attached to both ends of the as-prepared film, and the heating characteristi...

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Main Authors: Seojin Kim, Weontae Oh, Jong-Seong Bae, Seong Baek Yang, Jeong Hyun Yeum, Jaehyeung Park, Choonghyun Sung, Jungsoo Kim, Jae-Cheon Shin
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:International Journal of Polymer Science
Online Access:http://dx.doi.org/10.1155/2019/3478325
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author Seojin Kim
Weontae Oh
Jong-Seong Bae
Seong Baek Yang
Jeong Hyun Yeum
Jaehyeung Park
Choonghyun Sung
Jungsoo Kim
Jae-Cheon Shin
author_facet Seojin Kim
Weontae Oh
Jong-Seong Bae
Seong Baek Yang
Jeong Hyun Yeum
Jaehyeung Park
Choonghyun Sung
Jungsoo Kim
Jae-Cheon Shin
author_sort Seojin Kim
collection DOAJ
description Heating films were prepared by using poly(methyl methacrylate) and polybutadiene composites containing graphite. The heating film was prepared by casting the as-made polymer composite on the PET film. Copper electrodes were attached to both ends of the as-prepared film, and the heating characteristics of the film were analyzed while applying the DC voltage. The electrical conductivity and the heating temperature of the heating films depended on the size, the structure, the content, and the dispersion characteristics of the graphite in the composite. The electrical resistance of the heating film was controlled to adjust the heating temperature of the film. The relationship between the physical/chemical structure and the heating characteristics of the composite film was studied by measuring the heating temperature as functions of film thickness and resistance by using an infrared thermal imaging camera. The lower the film resistance, the higher the heating temperature of the film. The surface temperature was uniform throughout the film.
format Article
id doaj-art-230843a2555b45579a6d66fb56f77ecb
institution Kabale University
issn 1687-9422
1687-9430
language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series International Journal of Polymer Science
spelling doaj-art-230843a2555b45579a6d66fb56f77ecb2025-02-03T06:00:29ZengWileyInternational Journal of Polymer Science1687-94221687-94302019-01-01201910.1155/2019/34783253478325Heating Characteristics of Films Prepared with Polymer-Graphite CompositesSeojin Kim0Weontae Oh1Jong-Seong Bae2Seong Baek Yang3Jeong Hyun Yeum4Jaehyeung Park5Choonghyun Sung6Jungsoo Kim7Jae-Cheon Shin8Division of Advanced Materials Engineering, Dong-eui University, Busan 47340, Republic of KoreaDivision of Advanced Materials Engineering, Dong-eui University, Busan 47340, Republic of KoreaBusan Center, Korea Basic Science Institute, Busan 46742, Republic of KoreaDepartment of Bio-Fibers and Materials Science, Kyungpook National University, Daegu 41566, Republic of KoreaDepartment of Bio-Fibers and Materials Science, Kyungpook National University, Daegu 41566, Republic of KoreaDivision of Advanced Materials Engineering, Dong-eui University, Busan 47340, Republic of KoreaDivision of Advanced Materials Engineering, Dong-eui University, Busan 47340, Republic of KoreaPusan National University Yangsan Hospital, Yangsan 50612, Republic of KoreaPohang Center for Evaluation of Biomaterials, Pohang 37668, Republic of KoreaHeating films were prepared by using poly(methyl methacrylate) and polybutadiene composites containing graphite. The heating film was prepared by casting the as-made polymer composite on the PET film. Copper electrodes were attached to both ends of the as-prepared film, and the heating characteristics of the film were analyzed while applying the DC voltage. The electrical conductivity and the heating temperature of the heating films depended on the size, the structure, the content, and the dispersion characteristics of the graphite in the composite. The electrical resistance of the heating film was controlled to adjust the heating temperature of the film. The relationship between the physical/chemical structure and the heating characteristics of the composite film was studied by measuring the heating temperature as functions of film thickness and resistance by using an infrared thermal imaging camera. The lower the film resistance, the higher the heating temperature of the film. The surface temperature was uniform throughout the film.http://dx.doi.org/10.1155/2019/3478325
spellingShingle Seojin Kim
Weontae Oh
Jong-Seong Bae
Seong Baek Yang
Jeong Hyun Yeum
Jaehyeung Park
Choonghyun Sung
Jungsoo Kim
Jae-Cheon Shin
Heating Characteristics of Films Prepared with Polymer-Graphite Composites
International Journal of Polymer Science
title Heating Characteristics of Films Prepared with Polymer-Graphite Composites
title_full Heating Characteristics of Films Prepared with Polymer-Graphite Composites
title_fullStr Heating Characteristics of Films Prepared with Polymer-Graphite Composites
title_full_unstemmed Heating Characteristics of Films Prepared with Polymer-Graphite Composites
title_short Heating Characteristics of Films Prepared with Polymer-Graphite Composites
title_sort heating characteristics of films prepared with polymer graphite composites
url http://dx.doi.org/10.1155/2019/3478325
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AT weontaeoh heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT jongseongbae heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT seongbaekyang heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT jeonghyunyeum heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT jaehyeungpark heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT choonghyunsung heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT jungsookim heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites
AT jaecheonshin heatingcharacteristicsoffilmspreparedwithpolymergraphitecomposites