Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module

碩士 === 元智大學 === 工業工程與管理學系 === 107 === Nowadays, energy takes very important role. The lights in house, cooking, and air conditioner, etc… all need electricity. However, the sources of electricity, like natural gas, coal fuel, will all cause certain extent of air pollution problem. Thus, solar power...

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Main Authors: Hsu-Ting Chang, 張旭廷
Other Authors: Yun-Shiow Chen
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/9359be
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spelling ndltd-TW-107YZU050310482019-11-08T05:12:15Z http://ndltd.ncl.edu.tw/handle/9359be Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module 應用實驗設計於太陽能模組層壓製程之研究 Hsu-Ting Chang 張旭廷 碩士 元智大學 工業工程與管理學系 107 Nowadays, energy takes very important role. The lights in house, cooking, and air conditioner, etc… all need electricity. However, the sources of electricity, like natural gas, coal fuel, will all cause certain extent of air pollution problem. Thus, solar power is a good alternative as it causes less environmental impact which is also more efficient than other renewable energies. It’s the reason solar energy has been treated as one of important methods of new power generation. To make solar energy getting more popular and invested by more families and industries, one of important point is how to decrease the total installation and generation electricity costs. This will rely on continuous optimizations of material technology and production management. This research will aim at the main parts of key material of solar energy and improvement of defect ratio. Among them, as lamination process takes longer than others, and the key material- EVA (ethylene- vinyl acetate copolymer) has been produced Cross-linking curing reaction after process heating and pressure, which cannot rework. So as long as the EVA is found delaminated or bubbled issues after module lamination pressure, the only way is to scrap, which will seriously affect production cost. This research takes EVA delamination defect ratio as experiment subject to use DOE(Design of Experiment) , make sure first chamber pressure temperature, second step pressure time, lamination process are the key factors of EVA delamination. Take better factor combination will make sure improve physically EVA delamination defect ratio. Yun-Shiow Chen 陳雲岫 2019 學位論文 ; thesis 49 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 元智大學 === 工業工程與管理學系 === 107 === Nowadays, energy takes very important role. The lights in house, cooking, and air conditioner, etc… all need electricity. However, the sources of electricity, like natural gas, coal fuel, will all cause certain extent of air pollution problem. Thus, solar power is a good alternative as it causes less environmental impact which is also more efficient than other renewable energies. It’s the reason solar energy has been treated as one of important methods of new power generation. To make solar energy getting more popular and invested by more families and industries, one of important point is how to decrease the total installation and generation electricity costs. This will rely on continuous optimizations of material technology and production management. This research will aim at the main parts of key material of solar energy and improvement of defect ratio. Among them, as lamination process takes longer than others, and the key material- EVA (ethylene- vinyl acetate copolymer) has been produced Cross-linking curing reaction after process heating and pressure, which cannot rework. So as long as the EVA is found delaminated or bubbled issues after module lamination pressure, the only way is to scrap, which will seriously affect production cost. This research takes EVA delamination defect ratio as experiment subject to use DOE(Design of Experiment) , make sure first chamber pressure temperature, second step pressure time, lamination process are the key factors of EVA delamination. Take better factor combination will make sure improve physically EVA delamination defect ratio.
author2 Yun-Shiow Chen
author_facet Yun-Shiow Chen
Hsu-Ting Chang
張旭廷
author Hsu-Ting Chang
張旭廷
spellingShingle Hsu-Ting Chang
張旭廷
Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
author_sort Hsu-Ting Chang
title Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
title_short Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
title_full Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
title_fullStr Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
title_full_unstemmed Implementation of DOE to Investigation on Process Parameters for Lamination Process of Solar Module
title_sort implementation of doe to investigation on process parameters for lamination process of solar module
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/9359be
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