A Study of Critical Success Factors of 3D Printing Applied to Power Plants
碩士 === 國立中興大學 === 資訊管理學系所 === 105 === In response to the global green energy trends and the development of innovative technology, the use of 3D printing technology for the manufacture of energy-saving carbon reduction of energy facilities is gradually a growing trend. This study explores the relatio...
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ndltd-TW-105NCHU53960182017-10-06T04:22:04Z http://ndltd.ncl.edu.tw/handle/26696949510238453305 A Study of Critical Success Factors of 3D Printing Applied to Power Plants 3D列印應用於發電廠之關鍵成功因素研究 Wen-Hsuan Fan 范文軒 碩士 國立中興大學 資訊管理學系所 105 In response to the global green energy trends and the development of innovative technology, the use of 3D printing technology for the manufacture of energy-saving carbon reduction of energy facilities is gradually a growing trend. This study explores the relationship between the current status and the development trends of global renewable energy and the application of 3D printing technology through literature analysis and case study. According to analyze the meaning of the three relevant cases of 3D printing applications by using the PEST model and the expert interview method. We propose the critical success factors of 3D printing applied to power plants. The conclusions and recommendations of this paper are as follows: Industry, official, scholar and researcher should cooperate with each other to achieve "mutual link." The Government should formulate appropriate policies to promote the development of 3D printing technology in line with "cost-effective" power plants. At the same time the use of 3D printing technology features and advantages, combined with traditional manufacturing experiences and innovative applications to accelerate product development and commercialization, the revitalization of related industries, enhance the international market competitiveness. Jyh-Yih Hsu 許志義 2017 學位論文 ; thesis 97 zh-TW |
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碩士 === 國立中興大學 === 資訊管理學系所 === 105 === In response to the global green energy trends and the development of innovative technology, the use of 3D printing technology for the manufacture of energy-saving carbon reduction of energy facilities is gradually a growing trend. This study explores the relationship between the current status and the development trends of global renewable energy and the application of 3D printing technology through literature analysis and case study. According to analyze the meaning of the three relevant cases of 3D printing applications by using the PEST model and the expert interview method. We propose the critical success factors of 3D printing applied to power plants. The conclusions and recommendations of this paper are as follows: Industry, official, scholar and researcher should cooperate with each other to achieve "mutual link." The Government should formulate appropriate policies to promote the development of 3D printing technology in line with "cost-effective" power plants. At the same time the use of 3D printing technology features and advantages, combined with traditional manufacturing experiences and innovative applications to accelerate product development and commercialization, the revitalization of related industries, enhance the international market competitiveness.
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author2 |
Jyh-Yih Hsu |
author_facet |
Jyh-Yih Hsu Wen-Hsuan Fan 范文軒 |
author |
Wen-Hsuan Fan 范文軒 |
spellingShingle |
Wen-Hsuan Fan 范文軒 A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
author_sort |
Wen-Hsuan Fan |
title |
A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
title_short |
A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
title_full |
A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
title_fullStr |
A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
title_full_unstemmed |
A Study of Critical Success Factors of 3D Printing Applied to Power Plants |
title_sort |
study of critical success factors of 3d printing applied to power plants |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/26696949510238453305 |
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