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  • 學位論文

添加奈米炭機油應用於實車測試之研究

Research of On-Road Verification for Vehicle by Using Motor Oil Containing Carbon Nanoparticles

指導教授 : 林百福
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摘要


奈米科技橫跨多個學科與領域,對於人類未來科技發展扮演著舉足輕重的角色。在奈米科技的迅速發展下,人類的生活將產生重大的改革,許多傳統科技領域也因奈米科技改變了材料或元件的製造與生產方式,勢必將帶來一場革命性的影響。奈米科技方可應用在車輛引擎潤滑方面,本研究將由冶炭奈米科技公司所提供之奈米炭機油添加劑添加至原廠機油中,並且使用在汽車與機車上進行實車道路測試,經測試結果顯示加入奈米炭機油添加劑之潤滑油較原廠用機油在油耗里程上有所提升,汽車測試方面約可提升最高8.58%和最低3.46%,而機車測試方面則約可提升最高12.49%和最低2.33%。由此可證,添加奈米炭機油添加劑可提升潤滑油的潤滑效果,進而提升引擎輸出動力達到增進其油耗里程之功效。

並列摘要


Nanotechnology can be utilised in many subjects and fields, it plays an important role for the future technological development of mankind. Under the rapid progress of nanotechnology, the human life will have a significant revolution. Many traditional science and technology fields have changed the ways of manufacturing and producing which are bound to bring a revolutionary impact. Nanotechnology can also be utilised in lubrication for vehicle engine, The tribological properties of carbon nanoparticles as additive in motor oil, sponsored by Purplecow Nano Tech., were tested by on-road verification on vehicle, and then to measure the fuel consumption between with and without carbon nanoparticles additive. The experiment shows that having the carbon nanoparticles as an additive for motor oil can improve the ratio of KPL and achieve high fuel efficiency for all tested vehicle. In car testing, it could raise from 3.46% and up to 8.58%. While in motorcycle testing, it could be promoted from 2.33% and up to 12.49%.We could infer that adding carbon nanoparticles in motor oil would improve the lubrication for vehicle engine, and thus to enhance the output power of engine and decrease fuel consumption.

參考文獻


[16] 洪忠仁,氧化銅奈米流體熱性質分析與應用研究,碩士論文,國立台北科技大學冷凍空調工程研究所,台北,2005。
[39] 彭德興,奈米粉體調質潤滑油磨潤特性研究,博士論文,中原大學機械工程研究所,桃園,2009。
[53] 賴耒聲,二氧化鈦奈米流體熱性質與應用研究,碩士論文,國立台北科技大學冷凍空調工程研究所,台北,2007。
[2] S. M. Hsu, “Molecular Basis of Lubrication,” Tribology International, vol. 37, 2004, pp. 553-559.
[4] Bobzin, K., Ernst, F., Zwick, J., Schlaefer, T., Cook, D., Nassenstein, K., Schwenk, A., and Hahn, M., “Coating bores of light metal engine blocks with a nanocomposite material using the plasma transferred wire arc thermal spray process,” Journal of Thermal Spray Technology, vol. 17, 2008, pp. 344-351.

被引用紀錄


李國裕(2012)。奈米陶瓷粉末潤滑油添加劑對柴油內燃機性能和廢氣排放影響之研究〔碩士論文,國立臺北科技大學〕。華藝線上圖書館。https://www.airitilibrary.com/Article/Detail?DocID=U0006-1306201218164900

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