Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface
碩士 === 逢甲大學 === 材料與製造工程所 === 94 === In the thin film transistor liquid-crystal display industry domain, to remove the dust particle form glass plate surface, there are mainly dry and wet types of cleaning technologies. The paper takes dry cleaner to be the cleaning technology as the research foundat...
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ndltd-TW-094FCU051590622015-12-11T04:04:28Z http://ndltd.ncl.edu.tw/handle/85892975985789794681 Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface 運用超音波空氣流微粒移除機制於玻璃基板之探討 Ming-I Huang 黃明夷 碩士 逢甲大學 材料與製造工程所 94 In the thin film transistor liquid-crystal display industry domain, to remove the dust particle form glass plate surface, there are mainly dry and wet types of cleaning technologies. The paper takes dry cleaner to be the cleaning technology as the research foundation because it has been studied among the development various types cleaning technology and as succeeded technology of the plant use, removes the glass foundation plate surface dust particle. Foundation of this research is under this high-velocity current auxiliary by the ultra-sonic wave technology discussion glass foundation plate on the particle removing mechanism and the potency. In this article, first, we will make the literature review of the surface cleaning technology at present. The theories of ultra-sonic wave, basic hydromechanics, and the cause analysis of particle attaching the glass foundation plate, will also be mentioned. By means of establishment of the ultra-sonic wave air current particle removing pattern, we obtained parameters of the different particle removing rate and applied them to D.O.E(Design of Experiment)and static software MINITAB. With the investigation of the interactive impact of factors, we found that the optimistic parameter to control the mechanism of particle remove by ultra-sonic wave. Chao-Yin Hsiao 蕭肇殷 2006 學位論文 ; thesis 80 zh-TW |
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碩士 === 逢甲大學 === 材料與製造工程所 === 94 === In the thin film transistor liquid-crystal display industry domain, to remove the dust particle form glass plate surface, there are mainly dry and wet types of cleaning technologies. The paper takes dry cleaner to be the cleaning technology as the research foundation because it has been studied among the development various types cleaning technology and as succeeded technology of the plant use, removes the glass foundation plate surface dust particle. Foundation of this research is under this high-velocity current auxiliary by the ultra-sonic wave technology discussion glass foundation plate on the particle removing mechanism and the potency.
In this article, first, we will make the literature review of the surface cleaning technology at present. The theories of ultra-sonic wave, basic hydromechanics, and the cause analysis of particle attaching the glass foundation plate, will also be mentioned. By means of establishment of the ultra-sonic wave air current particle removing pattern, we obtained parameters of the different particle removing rate and applied them to D.O.E(Design of Experiment)and static software MINITAB. With the investigation of the interactive impact of factors, we found that the optimistic parameter to control the mechanism of particle remove by ultra-sonic wave.
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author2 |
Chao-Yin Hsiao |
author_facet |
Chao-Yin Hsiao Ming-I Huang 黃明夷 |
author |
Ming-I Huang 黃明夷 |
spellingShingle |
Ming-I Huang 黃明夷 Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
author_sort |
Ming-I Huang |
title |
Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
title_short |
Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
title_full |
Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
title_fullStr |
Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
title_full_unstemmed |
Investigation on the Application of the Particle Removal Mechanism of Ultra-Sonic Air Flow to Clean Glass Surface |
title_sort |
investigation on the application of the particle removal mechanism of ultra-sonic air flow to clean glass surface |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/85892975985789794681 |
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