Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system

碩士 === 國立交通大學 === 機械工程系所 === 104 === This study is using UV laser processing system to ablate the graphene-based specimens. While finishing ablating the pattern on the specimens, we will analysis its thermal conduction efficiency and heat rate efficiency to discuss the designing and feasibility of t...

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Main Authors: Wang, Po-Han, 王柏翰
Other Authors: Cheng, Pi-Ying
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/03609435381244947269
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spelling ndltd-TW-104NCTU54891082017-09-06T04:22:25Z http://ndltd.ncl.edu.tw/handle/03609435381244947269 Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system 透過奈秒UV雷射加工系統直寫以石墨烯為基底微加熱器之研究 Wang, Po-Han 王柏翰 碩士 國立交通大學 機械工程系所 104 This study is using UV laser processing system to ablate the graphene-based specimens. While finishing ablating the pattern on the specimens, we will analysis its thermal conduction efficiency and heat rate efficiency to discuss the designing and feasibility of the graphene-based micro-heater. we will use various ways to measure the properties of the graphene-based specimens. Operating the atomic force microscope, raman spectroscopy, ultraviolet-visible spectroscopy, to measure its surface topography, D-band, G-band, 2D-band, transmittance and reflectance. While knowing the properties of the graphene-based specimens, we will use the data to simulate in ANSYS or COMSOL to describe its heat rate efficiency and heat distribution by different patterns. As long as optimizing the feasible pattern, we will operate the UV laser processing system to ablate the graphene-based specimens. After fabricating the graphene-based micro-heater pattern, we will setup it on electrode system to analysis results between simulations and experience. Cheng, Pi-Ying 鄭璧瑩 2016 學位論文 ; thesis 96 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立交通大學 === 機械工程系所 === 104 === This study is using UV laser processing system to ablate the graphene-based specimens. While finishing ablating the pattern on the specimens, we will analysis its thermal conduction efficiency and heat rate efficiency to discuss the designing and feasibility of the graphene-based micro-heater. we will use various ways to measure the properties of the graphene-based specimens. Operating the atomic force microscope, raman spectroscopy, ultraviolet-visible spectroscopy, to measure its surface topography, D-band, G-band, 2D-band, transmittance and reflectance. While knowing the properties of the graphene-based specimens, we will use the data to simulate in ANSYS or COMSOL to describe its heat rate efficiency and heat distribution by different patterns. As long as optimizing the feasible pattern, we will operate the UV laser processing system to ablate the graphene-based specimens. After fabricating the graphene-based micro-heater pattern, we will setup it on electrode system to analysis results between simulations and experience.
author2 Cheng, Pi-Ying
author_facet Cheng, Pi-Ying
Wang, Po-Han
王柏翰
author Wang, Po-Han
王柏翰
spellingShingle Wang, Po-Han
王柏翰
Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
author_sort Wang, Po-Han
title Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
title_short Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
title_full Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
title_fullStr Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
title_full_unstemmed Developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed UV laser processing system
title_sort developing of graphene-based micro-heater arrays fabricated by a nanosecond pulsed uv laser processing system
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/03609435381244947269
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