A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization

碩士 === 逢甲大學 === 化學工程學所 === 96 === Nowadays, the flexible carbon fiber composite widely apply to the electronic products, the recreation spot, the aerospace, the car and the general industry and so on. The surface of the carbon fiber composite mainly is the polymer, so its surface is easy to wear. If...

Full description

Bibliographic Details
Main Authors: Chi-Hung Hu, 胡啟閎
Other Authors: Yung-Sen Lin
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/05111190298480207417
id ndltd-TW-096FCU05063023
record_format oai_dc
spelling ndltd-TW-096FCU050630232015-11-27T04:04:44Z http://ndltd.ncl.edu.tw/handle/05111190298480207417 A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization 電漿聚合沈積可撓式碳纖維複合材料防刮薄膜之研究 Chi-Hung Hu 胡啟閎 碩士 逢甲大學 化學工程學所 96 Nowadays, the flexible carbon fiber composite widely apply to the electronic products, the recreation spot, the aerospace, the car and the general industry and so on. The surface of the carbon fiber composite mainly is the polymer, so its surface is easy to wear. If there is the anti-scratch thin film on the flexible carbon fiber composite, it could be possible to cause the maintenance to be artistic and increase its life time. The merit of Plasma polymerization is can carry on the polymerization thin film under the room temperature, but the pollution lowers. So the motive of the study is depositing transparent anti-scratch thin film on the flexible carbon fiber composite by low temperature plasma polymerization method, and promoting the ability of anti-scratch. Pencil test system (ASTM D3633) is used for checking the surface hardness. Cold Field Emission Scanning Electron Microscope (FESEM) is used for analyzing the film thickness and surface morphology. Yung-Sen Lin 林永森 2008 學位論文 ; thesis 145 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 逢甲大學 === 化學工程學所 === 96 === Nowadays, the flexible carbon fiber composite widely apply to the electronic products, the recreation spot, the aerospace, the car and the general industry and so on. The surface of the carbon fiber composite mainly is the polymer, so its surface is easy to wear. If there is the anti-scratch thin film on the flexible carbon fiber composite, it could be possible to cause the maintenance to be artistic and increase its life time. The merit of Plasma polymerization is can carry on the polymerization thin film under the room temperature, but the pollution lowers. So the motive of the study is depositing transparent anti-scratch thin film on the flexible carbon fiber composite by low temperature plasma polymerization method, and promoting the ability of anti-scratch. Pencil test system (ASTM D3633) is used for checking the surface hardness. Cold Field Emission Scanning Electron Microscope (FESEM) is used for analyzing the film thickness and surface morphology.
author2 Yung-Sen Lin
author_facet Yung-Sen Lin
Chi-Hung Hu
胡啟閎
author Chi-Hung Hu
胡啟閎
spellingShingle Chi-Hung Hu
胡啟閎
A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
author_sort Chi-Hung Hu
title A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
title_short A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
title_full A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
title_fullStr A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
title_full_unstemmed A Study of Anti-Scratch Thin Film Deposition onto Flexible Carbon Fiber Composite by Plasma Polymerization
title_sort study of anti-scratch thin film deposition onto flexible carbon fiber composite by plasma polymerization
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/05111190298480207417
work_keys_str_mv AT chihunghu astudyofantiscratchthinfilmdepositionontoflexiblecarbonfibercompositebyplasmapolymerization
AT húqǐhóng astudyofantiscratchthinfilmdepositionontoflexiblecarbonfibercompositebyplasmapolymerization
AT chihunghu diànjiāngjùhéchénjīkěnáoshìtànxiānwéifùhécáiliàofángguābáomózhīyánjiū
AT húqǐhóng diànjiāngjùhéchénjīkěnáoshìtànxiānwéifùhécáiliàofángguābáomózhīyánjiū
AT chihunghu studyofantiscratchthinfilmdepositionontoflexiblecarbonfibercompositebyplasmapolymerization
AT húqǐhóng studyofantiscratchthinfilmdepositionontoflexiblecarbonfibercompositebyplasmapolymerization
_version_ 1718138170805059584