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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 機械工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/24776
完整後設資料紀錄
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dc.contributor.advisor蘇侃
dc.contributor.authorHung-Yun Chuen
dc.contributor.author朱洪昀zh_TW
dc.date.accessioned2021-06-08T05:56:19Z-
dc.date.copyright2008-02-18
dc.date.issued2008
dc.date.submitted2008-01-31
dc.identifier.citation1. So H. and Chen C. H.,Effects of micro-wedges formed between parallel surfaces on mixed lubrication-Part I: Experimental evidence. Tribology Letters, 17(3) (2004) 509-516.
2. So H. and Chen C. H.,Effects of micro-wedges formed between parallel surfaces on mixed lubrication-Part II: Modeling. Tribology Letters, 17(3) (2004) 83-91.
3. J. A. Williams, “Engineering Tribology” , Oxford University Press, Oxford, 1994,134-135
4. F. P. Bowden and D. Tabor, The friction and lubrication of solids, oxford university press, London
5. A. P. Green. , “Friction between Unlubricated Metals: A Theoretical Analysis of the Junction Model, ”Proceedings of the Royal Society of Londen A., 1995a., Vol.228,pp.191-204.
6. A. P. Green. , “The Plastic Yielding of Metal Junction due to Combined Shear and Pressure,” Journal of the Mechanics and Physics and Solids, 1995b , Vol. 2, pp. 197-211
7. A. Kohno and S. Hyodo, “The Effect of Surface Energy on the Microadhesion between Hard Solid,” J. Phys. D: Appl. Phys., 1974 Vol. 7,pp. 1243-1246.
8. T. Miyamoto, R. Kaneko and Y. Ando, “Interaction Force between Thin File Disk Media and Elastic Solids Investigated by Atomic Force Microscope,” Trans. ASME:J. of Tribol., 1990, Vol.112, pp. 567-572
9. F. Aral, D. Ando, T. Fukuda , “Adhesion Force Reduction for Micro Manipulation Base on Micro Physic,” Proc, 1996, IEEEE/RJS Int.Conf. on Intelligent Robotics and System, pp. 354-359
10. J. K. Lancaster, “A Review of the Influence of Environmental Humidity and Water on Friction, Lubrication and weat”, Tribology International, December, 1990, Vol. 23, No. 6
11. D. Klaffke, “On the Repeatability of Friction and Wear Results and on the Influence of Humidity in Oscillating Sliding Test of Steel-Steel Pairings”, Wear, Vol. 189, 1995, pp. 117-121
12. A. O. Lebeck, J. Tribology, Parallel Sliding Load Support in the Mixed Friction Regimme, Part I-The Experiment data, trans. ASME, 109(1987)189.
13. A.O. Lebeck, J. Tribology, Parallel Sliding Load Support in the Mixed Friction Regimme, Part II-Evaluation of the Mechanisms, trans. ASME, 109(1987)189.
14. Y. K. Cho, L. Cai, and S. Granick,“Molecular Tribology of Lubricants and additives”Tribology International Vol.30, 1997, No.12, pp.889-894
15. Q. Quyang, K. Ishida, and K.Okada, “Investigation ofmicro-adhesion by Atomic Force Microscopy” Applied Surface Science 169-170,2001,pp.644-648
16. B. Bhushan, C. Dandavate, “Thin-film Friction and Adhesion Studies Using Atomic Force Microscopy”,Journal of Applied Physics,Vol.87,1999,No.3,pp.1201-1210
17. E. S. Sprolrs, D. J. Gaul and D. J. Duquette, “A New Interpretation of The Mechanism of Fretting and Fretting corrosion damage ,”in Foundamentals of Tribology, MIT Press, 1980.
18. J. A. Williams, “Engineering Tribology”, Oxford University Press, Oxford, 1994, 136-140
19. Ernest Rabinowicz, “Friction and Wear of Materials 2nd edition”, John Wilwy and Sons. Inc. 199517.
20.Ernest Rabinowicz, “Friction and Wear of Materials ”,John Wilwy and Sons.Inc.1995
21. K. L. Johnson, “Contact Mechanics”, 1985, Cambridge University Press,Cambridge.
22. D.Dowson, “History of Tribology”, Longman, 1979
23. R. Stribeck, Die wesentlichen eiggenschaften der Gleit-und Rollenlager, VDI-Zeitschrift, 46(1902) 1341, 1432, 1463.
24. C. P. Green, H. Lioe, J. P. Cleveland, R. Proksch, P. Mulvaney and J. E. Sader, “Normal and Torsional Spring Constants of Atomic Force Microscopy Cantilevers ”, Rev. Sci. Instrum. , (2004) Vol.75(6), pp. 1988-1996
25. D. F. Ogletree, R. W. Carpick, and M. Salmeron, “Calibration of Frictional Force in Atomic Force Microscopy”, Rev. Sci. Instrum., (1996) Vol.67(9), pp. 3298-3306
26. P. Bilas, L. Romana, B. Kraus, Y. Bercion, and J. L. Mansot, “Quantitative Characterization of Friction Coefficient Using Lateral Force Microscopy in The Wearless Regime ”, Rev. Sci. Instrum., (2004) Vol. 75(2), pp.415-421
27. N. K. Chang, “Mechanical Properties of Double Coiled Carbon Nanotubes”, Nanotechnology, 2006. IEEE-NANO 2006. Sixth IEEE Conference on Publication Date: 17-20 June 2006 Volume: 1, On page(s): 270- 273
28. J. Ruan and B. Bhushan, “Atomic-scale and Microscale Friction of Graphite and Diamond Using Friction Force Microscopy”, J. Appl. Phys, (1994) Vol 76(9)
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/24776-
dc.description.abstract本研究應用原子力顯微鏡(Atomic Force Microscope, AFM)探討乾燥與含油固體表面的摩擦情形,定量計算摩擦力與摩擦係數,並改變不同實驗條件:負載1.24nN-6.2nN,CSC17/ALBS與CSC38/ALBS兩種探針,分別掃描中碳鋼與晶圓試片,分析粗糙度與吸引力對摩擦力的影響。
由實驗結果得知,粗糙度與吸引力的影響,使原子力顯微鏡所量測的側向力訊號震盪,分離後確實可得到穩定的摩擦係數,且吸引力與粗糙峰對應位置具有相關性,於粗糙山峰處吸引力小,粗糙山谷處吸引力大,而探針的剛性對於量測摩擦力的影響是剛性越小其準確性越高,缺點是無法承受太大的負載。
可以利用原子力顯微鏡,量測油膜脫離固體表面的臨界剪應力,結果顯示不同膜厚之分離力會不同。
zh_TW
dc.description.provenanceMade available in DSpace on 2021-06-08T05:56:19Z (GMT). No. of bitstreams: 1
ntu-97-R94522533-1.pdf: 2189003 bytes, checksum: 67ef17fa10467896cb901003a013c2c5 (MD5)
Previous issue date: 2008
en
dc.description.tableofcontentsAbstract.................................................Ⅰ
摘要.....................................................Ⅱ
目錄.....................................................Ⅲ
表目錄...................................................Ⅴ
圖目錄...................................................Ⅵ
第一章 緒論
1-1 研究動機與目的........................................1
1-2 相關文獻回顧..........................................2
第二章 相關理論
2-1 乾摩擦機制............................................4
2-2 固體的表面形態........................................6
2-3 固體表面能............................................8
2-4 固體的接觸行為........................................8
2-5 潤滑模式.............................................10
2-5-1 液動潤滑........................................11
2-5-2 彈液動潤滑......................................12
2-5-3 混合潤滑........................................12
2-5-4 邊界潤滑........................................12
第三章 實驗設備與方法
3-1 實驗設備.............................................13
3-2實驗結果之量測方法....................................14
3-3實驗結果之量測........................................19
3-4 實驗條件.............................................21
3-5 實驗步驟與方法.......................................22
第四章 實驗結果與討論
4-1 乾摩擦實驗...........................................24
4-1-1 側向力量測結果..................................24
4-1-2 吸引力量測結果..................................24
4-2 掃描含油固體實驗.....................................25
4-2-1 側向力量測結果..................................26
4-2-2 吸引力量測結果..................................26
4-3 實驗分析與討論.......................................26
4-3-1 表面粗度的影響..................................26
4-3-2 吸引力的影響....................................28
4-3-3 油膜的影響......................................29
4-3-4 探針剛性對實驗數據的影響........................30
第五章 結論與建議
5-1 結論.................................................32
5-2 未來研究方向與建議...................................32
參考文獻.................................................34
dc.language.isozh-TW
dc.subject黏附力zh_TW
dc.subject原子力顯微鏡zh_TW
dc.subject摩擦力zh_TW
dc.subjectfrictionen
dc.subjectadhesionen
dc.subjectAFMen
dc.title應用原子力顯微鏡量測乾燥與含油固體表面摩擦力zh_TW
dc.titleThe Measurement of Friction on Dry and Oiled Surfaces With AFMen
dc.typeThesis
dc.date.schoolyear96-1
dc.description.degree碩士
dc.contributor.oralexamcommittee林原慶,胡致中
dc.subject.keyword原子力顯微鏡,摩擦力,黏附力,zh_TW
dc.subject.keywordAFM,friction,adhesion,en
dc.relation.page73
dc.rights.note未授權
dc.date.accepted2008-01-31
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept機械工程學研究所zh_TW
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