TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container
碩士 === 國立勤益科技大學 === 工業工程與管理系 === 97 === Applying TRIZ innovation theorems, the relevant 39 engineering parameters with 40 invention principles enable effectively the innovation and the design around on issued patent. This will cut the R&D expense, reduce the time span from research stage to comm...
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ndltd-TW-097NCIT50310292015-10-13T19:06:37Z http://ndltd.ncl.edu.tw/handle/35764382803163731910 TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container TRIZ之應用-以研發液態H燃料容器為例 Ming-Cheng Hsu 許銘城 碩士 國立勤益科技大學 工業工程與管理系 97 Applying TRIZ innovation theorems, the relevant 39 engineering parameters with 40 invention principles enable effectively the innovation and the design around on issued patent. This will cut the R&D expense, reduce the time span from research stage to commercialization stage, and with the design around on the issued patent we can proceed with value innovation and greatly reduce the research risk on the new product development. All these advantages boot up TRIZ application to be the popular commodity in the current trend of academy. There are four major advantages in TRIZ: (1) reduce the product life cycle, (2) cut down the R&D cost, (3) enhance the reliability of the conceptual design, and (4) create patentable ideas. The study focuses on the design improvement of the weakness of traditional high-pressure liquid gas tank in the market: easily explosion and low heat efficiency. By using TRIZ tools we can proceed with the innovation process to reach a safe, eco-conservative, economic and convenient Hexane container design. And through linking the fish-bone diagram and QFD with TRIZ we may meet the customer’s needs in our design. Pei-Hsi Liu 劉培熙 2009 學位論文 ; thesis 135 zh-TW |
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碩士 === 國立勤益科技大學 === 工業工程與管理系 === 97 === Applying TRIZ innovation theorems, the relevant 39 engineering parameters with 40 invention principles enable effectively the innovation and the design around on issued patent. This will cut the R&D expense, reduce the time span from research stage to commercialization stage, and with the design around on the issued patent we can proceed with value innovation and greatly reduce the research risk on the new product development. All these advantages boot up TRIZ application to be the popular commodity in the current trend of academy. There are four major advantages in TRIZ: (1) reduce the product life cycle, (2) cut down the R&D cost, (3) enhance the reliability of the conceptual design, and (4) create patentable ideas.
The study focuses on the design improvement of the weakness of traditional high-pressure liquid gas tank in the market: easily explosion and low heat efficiency. By using TRIZ tools we can proceed with the innovation process to reach a safe, eco-conservative, economic and convenient Hexane container design. And through linking the fish-bone diagram and QFD with TRIZ we may meet the customer’s needs in our design.
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author2 |
Pei-Hsi Liu |
author_facet |
Pei-Hsi Liu Ming-Cheng Hsu 許銘城 |
author |
Ming-Cheng Hsu 許銘城 |
spellingShingle |
Ming-Cheng Hsu 許銘城 TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
author_sort |
Ming-Cheng Hsu |
title |
TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
title_short |
TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
title_full |
TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
title_fullStr |
TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
title_full_unstemmed |
TRIZ Application - Exemplified by the development of Liquid Hexane Fuel Container |
title_sort |
triz application - exemplified by the development of liquid hexane fuel container |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/35764382803163731910 |
work_keys_str_mv |
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