Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology

碩士 === 國立彰化師範大學 === 電子工程學系 === 107 === In this experiment, research was conducted on the improvement of the bubble in the flat glass. In pursuit of the requirement for the high quality of the flat glass in terms of period homogeneity, the requirement for the size of the bubble is a defect that requi...

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Main Authors: Lee,Yu-Chen, 李育誠
Other Authors: Lin,Der-Yuh
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/d6evgf
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spelling ndltd-TW-107NCUE54280022019-05-16T01:40:46Z http://ndltd.ncl.edu.tw/handle/d6evgf Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology 平板玻璃之澄清槽氣泡良率改善-以反應曲面法分析 Lee,Yu-Chen 李育誠 碩士 國立彰化師範大學 電子工程學系 107 In this experiment, research was conducted on the improvement of the bubble in the flat glass. In pursuit of the requirement for the high quality of the flat glass in terms of period homogeneity, the requirement for the size of the bubble is a defect that requires close attention. Because the yield rate of flat glass production is only 90%, the remaining defective products can only be classified as substandard products. For the ever-increasing demand for cost control, it is an intangible waste, so the existing skills in the manufacture of flat glass should be With the improvement of its system, this paper will focus on improving the bubbles and other defects of flat glass. Through the control of key factors, the paper will find the most suitable process conditions and achieve the demand of more than 95% yield. Through the help of statistical methods of the reaction surface method, smooth optimization of the operating conditions can be found. After the mass production test, it can also meet the expected needs and can provide a clear direction for improvement in subsequent studies. Lin,Der-Yuh 林得裕 2019 學位論文 ; thesis 43 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立彰化師範大學 === 電子工程學系 === 107 === In this experiment, research was conducted on the improvement of the bubble in the flat glass. In pursuit of the requirement for the high quality of the flat glass in terms of period homogeneity, the requirement for the size of the bubble is a defect that requires close attention. Because the yield rate of flat glass production is only 90%, the remaining defective products can only be classified as substandard products. For the ever-increasing demand for cost control, it is an intangible waste, so the existing skills in the manufacture of flat glass should be With the improvement of its system, this paper will focus on improving the bubbles and other defects of flat glass. Through the control of key factors, the paper will find the most suitable process conditions and achieve the demand of more than 95% yield. Through the help of statistical methods of the reaction surface method, smooth optimization of the operating conditions can be found. After the mass production test, it can also meet the expected needs and can provide a clear direction for improvement in subsequent studies.
author2 Lin,Der-Yuh
author_facet Lin,Der-Yuh
Lee,Yu-Chen
李育誠
author Lee,Yu-Chen
李育誠
spellingShingle Lee,Yu-Chen
李育誠
Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
author_sort Lee,Yu-Chen
title Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
title_short Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
title_full Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
title_fullStr Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
title_full_unstemmed Improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
title_sort improvement of bubble yield in clarified tanks of flat glass - analysis by response surface methodology
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/d6evgf
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