The study on the fabrication of gaphene thermal compound

碩士 === 東南科技大學 === 機械工程研究所 === 102 ===   This study used the graphene with base oils and successful production of graphene thermal compound, and constructed a good thermal detector for measuring the thermal resistance of thermal paste. After experiments, the produced graphene thermal compound is inde...

Full description

Bibliographic Details
Main Authors: CHIH-WEI WANG, 王志瑋
Other Authors: Jen-Ching Huang
Format: Others
Language:zh-TW
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/59148506017282380549
id ndltd-TW-102TNIO0490012
record_format oai_dc
spelling ndltd-TW-102TNIO04900122017-01-14T04:15:15Z http://ndltd.ncl.edu.tw/handle/59148506017282380549 The study on the fabrication of gaphene thermal compound 石墨烯導熱膏之製作與研究 CHIH-WEI WANG 王志瑋 碩士 東南科技大學 機械工程研究所 102   This study used the graphene with base oils and successful production of graphene thermal compound, and constructed a good thermal detector for measuring the thermal resistance of thermal paste. After experiments, the produced graphene thermal compound is indeed quite excellent thermal effect, its effectiveness and stability are inferior to the commercially available thermal compound product, the highest thermal conductivity up to 7.369 W / mK.   The study also found that the following phenomenon: the appropriate concentration of graphene thermal compound is the weight percentage of 30%, while increasing the amount of content is too low, thermal conductivity is not obvious; when the content is too high, but lower thermal conductivity. Importing sonication in the production process of the thermal compound, can effectively disperse the oil and basic materials, and increase the uniformity of thermal compound and increase the thermal conductivity. In the base oil, the olive oil has a better compatibility with graphene than PDMS, which enhance the thermal conductivity of 16%. In the dispersant, the use of isopropyl alcohol than the thermal conductivity improved by 31%. Therefore, graphene dispersion directly affects the heat conduction effect. Also proposed is different from the commercially available thermal compound, this research process is quite simple, just a few steps that can make a very high thermal conductivity thermal compound, so this study should have good thermal compound technical contribution. Jen-Ching Huang 黃仁清 2014 學位論文 ; thesis 71 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 東南科技大學 === 機械工程研究所 === 102 ===   This study used the graphene with base oils and successful production of graphene thermal compound, and constructed a good thermal detector for measuring the thermal resistance of thermal paste. After experiments, the produced graphene thermal compound is indeed quite excellent thermal effect, its effectiveness and stability are inferior to the commercially available thermal compound product, the highest thermal conductivity up to 7.369 W / mK.   The study also found that the following phenomenon: the appropriate concentration of graphene thermal compound is the weight percentage of 30%, while increasing the amount of content is too low, thermal conductivity is not obvious; when the content is too high, but lower thermal conductivity. Importing sonication in the production process of the thermal compound, can effectively disperse the oil and basic materials, and increase the uniformity of thermal compound and increase the thermal conductivity. In the base oil, the olive oil has a better compatibility with graphene than PDMS, which enhance the thermal conductivity of 16%. In the dispersant, the use of isopropyl alcohol than the thermal conductivity improved by 31%. Therefore, graphene dispersion directly affects the heat conduction effect. Also proposed is different from the commercially available thermal compound, this research process is quite simple, just a few steps that can make a very high thermal conductivity thermal compound, so this study should have good thermal compound technical contribution.
author2 Jen-Ching Huang
author_facet Jen-Ching Huang
CHIH-WEI WANG
王志瑋
author CHIH-WEI WANG
王志瑋
spellingShingle CHIH-WEI WANG
王志瑋
The study on the fabrication of gaphene thermal compound
author_sort CHIH-WEI WANG
title The study on the fabrication of gaphene thermal compound
title_short The study on the fabrication of gaphene thermal compound
title_full The study on the fabrication of gaphene thermal compound
title_fullStr The study on the fabrication of gaphene thermal compound
title_full_unstemmed The study on the fabrication of gaphene thermal compound
title_sort study on the fabrication of gaphene thermal compound
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/59148506017282380549
work_keys_str_mv AT chihweiwang thestudyonthefabricationofgaphenethermalcompound
AT wángzhìwěi thestudyonthefabricationofgaphenethermalcompound
AT chihweiwang shímòxīdǎorègāozhīzhìzuòyǔyánjiū
AT wángzhìwěi shímòxīdǎorègāozhīzhìzuòyǔyánjiū
AT chihweiwang studyonthefabricationofgaphenethermalcompound
AT wángzhìwěi studyonthefabricationofgaphenethermalcompound
_version_ 1718408268554960896