Optimal Design of Hinge for Automatic Return Door
碩士 === 國立高雄第一科技大學 === 工業設計研究所 === 100 === In this study, a new type of hinge for automatic return door has been designed and then the dimensions of hinge were optimized by multi-objective optimization method. Spring has been selected as the driving power for more inexpensive then the motor or hydrau...
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ndltd-TW-100NKIT50380462015-10-13T21:33:08Z http://ndltd.ncl.edu.tw/handle/72928805935004358829 Optimal Design of Hinge for Automatic Return Door 自動歸位門鉸鏈設計最佳化研究 Mei-yen Chen 陳眉諺 碩士 國立高雄第一科技大學 工業設計研究所 100 In this study, a new type of hinge for automatic return door has been designed and then the dimensions of hinge were optimized by multi-objective optimization method. Spring has been selected as the driving power for more inexpensive then the motor or hydraulic. Besides, opened for 90 degrees and fixed, close completely for all life cycle, and smaller impact force while returning have been chosen as the specifications. Through the study , we complete the concept design with the drawing software Solidworks first. Then ,simulate the motion by the Mechanism Motion Analysis software MSC Visual Nastran Desktop to review the driving feasibility. Finally, the spring constant, the slanted angle of cam and the groove diameter have been chosen as the parameters. The smaller the better of return time and impact force were indicated as object functions. The optimal design has been complete by the multi-objective optimization method of Robust Multiple-Criteria Optimization, and the range of the withstanding weight of the door has also been found. Jung-Hung Sun 孫榮宏 2012 學位論文 ; thesis 63 zh-TW |
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碩士 === 國立高雄第一科技大學 === 工業設計研究所 === 100 === In this study, a new type of hinge for automatic return door has been designed and then the dimensions of hinge were optimized by multi-objective optimization method. Spring has been selected as the driving power for more inexpensive then the motor or hydraulic. Besides, opened for 90 degrees and fixed, close completely for all life cycle, and smaller impact force while returning have been chosen as the specifications. Through the study , we complete the concept design with the drawing software Solidworks first. Then ,simulate the motion by the Mechanism Motion Analysis software MSC Visual Nastran Desktop to review the driving feasibility. Finally, the spring constant, the slanted angle of cam and the groove diameter have been chosen as the parameters. The smaller the better of return time and impact force were indicated as object functions. The optimal design has been complete by the multi-objective optimization method of Robust Multiple-Criteria Optimization, and the range of the withstanding weight of the door has also been found.
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author2 |
Jung-Hung Sun |
author_facet |
Jung-Hung Sun Mei-yen Chen 陳眉諺 |
author |
Mei-yen Chen 陳眉諺 |
spellingShingle |
Mei-yen Chen 陳眉諺 Optimal Design of Hinge for Automatic Return Door |
author_sort |
Mei-yen Chen |
title |
Optimal Design of Hinge for Automatic Return Door |
title_short |
Optimal Design of Hinge for Automatic Return Door |
title_full |
Optimal Design of Hinge for Automatic Return Door |
title_fullStr |
Optimal Design of Hinge for Automatic Return Door |
title_full_unstemmed |
Optimal Design of Hinge for Automatic Return Door |
title_sort |
optimal design of hinge for automatic return door |
publishDate |
2012 |
url |
http://ndltd.ncl.edu.tw/handle/72928805935004358829 |
work_keys_str_mv |
AT meiyenchen optimaldesignofhingeforautomaticreturndoor AT chénméiyàn optimaldesignofhingeforautomaticreturndoor AT meiyenchen zìdòngguīwèiménjiǎoliànshèjìzuìjiāhuàyánjiū AT chénméiyàn zìdòngguīwèiménjiǎoliànshèjìzuìjiāhuàyánjiū |
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