Design and development modeling for compact internal cutting cups machine

碩士 === 國立臺北科技大學 === 機電整合研究所 === 101 === In general, a plastic cup runs hot press exhaust molding with plastic molded cup machines prior to cutting with a cutting machine. Consequently, the process is relatively long and volume of the whole system is relatively large. To be more efficient, the im...

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Main Authors: Hong-Wu Jiang, 江宏武
Other Authors: Chin-Shu Wang
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/bkzkz3
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spelling ndltd-TW-101TIT056510862019-05-15T21:02:31Z http://ndltd.ncl.edu.tw/handle/bkzkz3 Design and development modeling for compact internal cutting cups machine 緊湊型模內切製杯機之設計與開發 Hong-Wu Jiang 江宏武 碩士 國立臺北科技大學 機電整合研究所 101 In general, a plastic cup runs hot press exhaust molding with plastic molded cup machines prior to cutting with a cutting machine. Consequently, the process is relatively long and volume of the whole system is relatively large. To be more efficient, the improved process combines hot press and cutting into a single machine which can be done by varying acceleration with time. In this thesis, we propose a design of an accelerating cam to accomplish cutting inside the mold with minimum power consumption. The profile of the cams is determined with a selected cam curve and position analysis. It is calculated by the vector loop from mechanical design. Newton''s law is then applied to find out the internal stress of each bar. When the machine is modularized, giving different bar length can have corresponding cam profile without affecting mold movement. As a result, the machine is highly customizable for variant user needs. It speeds up the diagram modification and simulation in computer design In addition, we innovate a machine transformation which gives it diverse motion. In conclusion, our design process supports the systematic machine production, the integrated machine design, the diversified use of the machine. Chin-Shu Wang 王金樹 2013 學位論文 ; thesis 77 zh-TW
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language zh-TW
format Others
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description 碩士 === 國立臺北科技大學 === 機電整合研究所 === 101 === In general, a plastic cup runs hot press exhaust molding with plastic molded cup machines prior to cutting with a cutting machine. Consequently, the process is relatively long and volume of the whole system is relatively large. To be more efficient, the improved process combines hot press and cutting into a single machine which can be done by varying acceleration with time. In this thesis, we propose a design of an accelerating cam to accomplish cutting inside the mold with minimum power consumption. The profile of the cams is determined with a selected cam curve and position analysis. It is calculated by the vector loop from mechanical design. Newton''s law is then applied to find out the internal stress of each bar. When the machine is modularized, giving different bar length can have corresponding cam profile without affecting mold movement. As a result, the machine is highly customizable for variant user needs. It speeds up the diagram modification and simulation in computer design In addition, we innovate a machine transformation which gives it diverse motion. In conclusion, our design process supports the systematic machine production, the integrated machine design, the diversified use of the machine.
author2 Chin-Shu Wang
author_facet Chin-Shu Wang
Hong-Wu Jiang
江宏武
author Hong-Wu Jiang
江宏武
spellingShingle Hong-Wu Jiang
江宏武
Design and development modeling for compact internal cutting cups machine
author_sort Hong-Wu Jiang
title Design and development modeling for compact internal cutting cups machine
title_short Design and development modeling for compact internal cutting cups machine
title_full Design and development modeling for compact internal cutting cups machine
title_fullStr Design and development modeling for compact internal cutting cups machine
title_full_unstemmed Design and development modeling for compact internal cutting cups machine
title_sort design and development modeling for compact internal cutting cups machine
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/bkzkz3
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