Study of ship nano coating for anti-fouling to decrease resistance and physics property

碩士 === 國立成功大學 === 系統及船舶機電工程學系碩博士班 === 94 === There are two kinds of ship resistance. One is that changing the appearance would result in the decrease of wave-making resistance. Another is to change the coating surface of the ship resulting in a decrease of friction resistance. Our research is to inv...

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Main Authors: Chich-Chih Huang, 黃傑治
Other Authors: Ming-Chung Fang
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/07388468369490309148
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spelling ndltd-TW-094NCKU53450142016-05-30T04:21:59Z http://ndltd.ncl.edu.tw/handle/07388468369490309148 Study of ship nano coating for anti-fouling to decrease resistance and physics property 船舶奈米塗料於防污減阻與物性之研究 Chich-Chih Huang 黃傑治 碩士 國立成功大學 系統及船舶機電工程學系碩博士班 94 There are two kinds of ship resistance. One is that changing the appearance would result in the decrease of wave-making resistance. Another is to change the coating surface of the ship resulting in a decrease of friction resistance. Our research is to investigate the latter. The idea of the lotus-effect leads to the development of a high contact angle of nano coating which reduces friction resistance on the surface of the ship and elevates the surface to prevent pollution. In the present study, we mainly used silane containing fluorine elements to change the quality of SiO2 nano powder which was wetted by toluene. Furthermore, using different structure of based materials was formulated with oxidize copper (Cu2O) to form the nano coating which was performed on the experiments of hardness, adhesive force, contact angle, salt solution spraying, biological toxicity, ship mould resistance and exposure to ocean, etc. On the other hand, ship at mid low rate(or speed) would reduce by average a resistance of 11.5% through the experiment of resistance of foil. Again, it would reduce the resistance by 13.8% through experiment of fishing boat block mould. Ming-Chung Fang 方銘川 2006 學位論文 ; thesis 114 zh-TW
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description 碩士 === 國立成功大學 === 系統及船舶機電工程學系碩博士班 === 94 === There are two kinds of ship resistance. One is that changing the appearance would result in the decrease of wave-making resistance. Another is to change the coating surface of the ship resulting in a decrease of friction resistance. Our research is to investigate the latter. The idea of the lotus-effect leads to the development of a high contact angle of nano coating which reduces friction resistance on the surface of the ship and elevates the surface to prevent pollution. In the present study, we mainly used silane containing fluorine elements to change the quality of SiO2 nano powder which was wetted by toluene. Furthermore, using different structure of based materials was formulated with oxidize copper (Cu2O) to form the nano coating which was performed on the experiments of hardness, adhesive force, contact angle, salt solution spraying, biological toxicity, ship mould resistance and exposure to ocean, etc. On the other hand, ship at mid low rate(or speed) would reduce by average a resistance of 11.5% through the experiment of resistance of foil. Again, it would reduce the resistance by 13.8% through experiment of fishing boat block mould.
author2 Ming-Chung Fang
author_facet Ming-Chung Fang
Chich-Chih Huang
黃傑治
author Chich-Chih Huang
黃傑治
spellingShingle Chich-Chih Huang
黃傑治
Study of ship nano coating for anti-fouling to decrease resistance and physics property
author_sort Chich-Chih Huang
title Study of ship nano coating for anti-fouling to decrease resistance and physics property
title_short Study of ship nano coating for anti-fouling to decrease resistance and physics property
title_full Study of ship nano coating for anti-fouling to decrease resistance and physics property
title_fullStr Study of ship nano coating for anti-fouling to decrease resistance and physics property
title_full_unstemmed Study of ship nano coating for anti-fouling to decrease resistance and physics property
title_sort study of ship nano coating for anti-fouling to decrease resistance and physics property
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/07388468369490309148
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