Fabrication and Testing of Micro Gear and Polymeric Biochip
碩士 === 大葉大學 === 機械工程研究所碩士班 === 94 === The greatest advantage of micro injection molding is that it can mass produce items rapidly and it is cheap. In this experiment, we manufacture items with micro-features and micro-channels by IM and hot embossing molding.LIGA techniques use high- strength X-ray...
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ndltd-TW-094DYU004880232016-06-01T04:14:00Z http://ndltd.ncl.edu.tw/handle/42796908539683730444 Fabrication and Testing of Micro Gear and Polymeric Biochip 微齒輪與生物晶片之製程分析測試 Hung-Yu Hsiao 蕭宏宇 碩士 大葉大學 機械工程研究所碩士班 94 The greatest advantage of micro injection molding is that it can mass produce items rapidly and it is cheap. In this experiment, we manufacture items with micro-features and micro-channels by IM and hot embossing molding.LIGA techniques use high- strength X-ray to etch, and this technique went against us to research, because they need a lot of cost. As LIGA techniques are getting well, gradually. The study use LIGA-Like techniques, Micro Electro Mechanical System and micromachining technique put together to manufacture micro fluid biochip and micro gear and to experiment by injection molding machine. The study use exchangeable insets which micro structures size are ten to hundred micrometers. The structures size of insets and product measure by CCD and α-step. The study to expect to manufacture micro gear and biochip of micro fluid-channels by injection molding machine and hot-embossing machine are good and testing result well. Finally, hope to establish reference background in micro gear and biochip of micro fluid-channels by injection molding and hot-embossing area. Cheng-Hsien Wu 吳政憲 2006 學位論文 ; thesis 102 zh-TW |
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碩士 === 大葉大學 === 機械工程研究所碩士班 === 94 === The greatest advantage of micro injection molding is that it can mass produce items rapidly and it is cheap. In this experiment, we manufacture items with micro-features and micro-channels by IM and hot embossing molding.LIGA techniques use high- strength X-ray to etch, and this technique went against us to research, because they need a lot of cost. As LIGA techniques are getting well, gradually. The study use LIGA-Like techniques, Micro Electro Mechanical System and micromachining technique put together to manufacture micro fluid biochip and micro gear and to experiment by injection molding machine. The study use exchangeable insets which micro structures size are ten to hundred micrometers. The structures size of insets and product measure by CCD and α-step. The study to expect to manufacture micro gear and biochip of micro fluid-channels by injection molding machine and hot-embossing machine are good and testing result well. Finally, hope to establish reference background in micro gear and biochip of micro fluid-channels by injection molding and hot-embossing area.
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author2 |
Cheng-Hsien Wu |
author_facet |
Cheng-Hsien Wu Hung-Yu Hsiao 蕭宏宇 |
author |
Hung-Yu Hsiao 蕭宏宇 |
spellingShingle |
Hung-Yu Hsiao 蕭宏宇 Fabrication and Testing of Micro Gear and Polymeric Biochip |
author_sort |
Hung-Yu Hsiao |
title |
Fabrication and Testing of Micro Gear and Polymeric Biochip |
title_short |
Fabrication and Testing of Micro Gear and Polymeric Biochip |
title_full |
Fabrication and Testing of Micro Gear and Polymeric Biochip |
title_fullStr |
Fabrication and Testing of Micro Gear and Polymeric Biochip |
title_full_unstemmed |
Fabrication and Testing of Micro Gear and Polymeric Biochip |
title_sort |
fabrication and testing of micro gear and polymeric biochip |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/42796908539683730444 |
work_keys_str_mv |
AT hungyuhsiao fabricationandtestingofmicrogearandpolymericbiochip AT xiāohóngyǔ fabricationandtestingofmicrogearandpolymericbiochip AT hungyuhsiao wēichǐlúnyǔshēngwùjīngpiànzhīzhìchéngfēnxīcèshì AT xiāohóngyǔ wēichǐlúnyǔshēngwùjīngpiànzhīzhìchéngfēnxīcèshì |
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