Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid
碩士 === 國立勤益科技大學 === 機械工程系 === 103 === According to the issue of green manufacturing and environmental protection, the machining technology comes to use Minimal Quantity Lubrication(MQL) to replace the traditional Dry Machining. In general of MQL, when the lubricating performance is greater, the cool...
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ndltd-TW-103NCIT56930332016-09-11T04:09:14Z http://ndltd.ncl.edu.tw/handle/97475730820542562093 Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid 切削液微量潤滑智能化模組開發之研究 Yu-Lun,Ho 何宇倫 碩士 國立勤益科技大學 機械工程系 103 According to the issue of green manufacturing and environmental protection, the machining technology comes to use Minimal Quantity Lubrication(MQL) to replace the traditional Dry Machining. In general of MQL, when the lubricating performance is greater, the cooling condition is getting poor, so does the opposite. Therefore, in order to improve the condition of MQL, this study is to develop a minimal cutting fluid cooling and lubrication proportion adjustable modules, hopefully those two modules can get both lubrication and cooling performance. The Experimental design is to investigate the influence that use different cutting fluid cooling and lubricant ratio on milling Inconel 718 superalloy. The result shows that use MQL to assist machining is effective to improve the workpieces’s surface roughness. Moreover, the cutting force and tool wear is decreased compare with Dry Machining. Shao-Hsien Chen 陳紹賢 2015 學位論文 ; thesis 100 zh-TW |
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碩士 === 國立勤益科技大學 === 機械工程系 === 103 === According to the issue of green manufacturing and environmental protection, the machining technology comes to use Minimal Quantity Lubrication(MQL) to replace the traditional Dry Machining.
In general of MQL, when the lubricating performance is greater, the cooling condition is getting poor, so does the opposite. Therefore, in order to improve the condition of MQL, this study is to develop a minimal cutting fluid cooling and lubrication proportion adjustable modules, hopefully those two modules can get both lubrication and cooling performance.
The Experimental design is to investigate the influence that use different cutting fluid cooling and lubricant ratio on milling Inconel 718 superalloy. The result shows that use MQL to assist machining is effective to improve the workpieces’s surface roughness. Moreover, the cutting force and tool wear is decreased compare with Dry Machining.
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author2 |
Shao-Hsien Chen |
author_facet |
Shao-Hsien Chen Yu-Lun,Ho 何宇倫 |
author |
Yu-Lun,Ho 何宇倫 |
spellingShingle |
Yu-Lun,Ho 何宇倫 Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
author_sort |
Yu-Lun,Ho |
title |
Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
title_short |
Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
title_full |
Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
title_fullStr |
Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
title_full_unstemmed |
Research and Development of Intelligent Module on Minimal Quantity Lubrication of Cutting Fluid |
title_sort |
research and development of intelligent module on minimal quantity lubrication of cutting fluid |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/97475730820542562093 |
work_keys_str_mv |
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