| 研究生: |
葉哲宇 zhe-yu Ye |
|---|---|
| 論文名稱: |
以實驗方法建立圓環鍛粗加工的異向性摩擦模型及其驗證 Establish the anisotropy friction model of ring upsetting and verification by experimental method |
| 指導教授: |
葉維磬
Wei-Ching Yeh |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
工學院 - 機械工程學系 Department of Mechanical Engineering |
| 畢業學年度: | 99 |
| 語文別: | 中文 |
| 論文頁數: | 95 |
| 中文關鍵詞: | 鍛粗 、摩擦 、異向性 、有限元素分析 |
| 外文關鍵詞: | finite element analysis, anisotropy, friction, Upsetting |
| 相關次數: | 點閱:8 下載:0 |
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在鍛粗過程中模具與材料之間的摩擦為影響變形的主因之一,為了瞭解摩擦所造成的不均勻變形(異向性變形)。本文利用車削、銑削及研磨作出定性、定量的模具與不同的表面形貌的詴片來進行圓環鍛粗加工實驗,在有潤滑條件下研究模具與詴片因表面相互影響所產生的異向性變形,以實驗方法建立一個圓環鍛粗加工的異向性摩擦模型。並且結合有限元素作分析,以不同的幾何外型(圓柱)驗證,比較端面輪廓與桶脹輪廓是否精確。如此可有效的預測因摩擦產生的異向性變形,來達到節省成本的目的。
In the process of upsetting, one of the main reason of deformation is friction, for understand the anisotropy deformation by friction. We make different surface morphology specimen and mold, used turning, milling and grind. Conduct ring upsetting experiment at lubricating environment research surface affect anisotropy deformation by specimen and mold, used experiment establish a anisotropy deformation model. Combine finite element analysis, verification different geometry(cylinder). Compare specimen surface profile and bulged profile. Forecast anisotropy deformation by friction
[1] Kunogi, M., "A new method of cold extrusion.", J. of the Scientific Research Institute, Vol.50, pp215-246, 1956.
[2] Male, A. T. and Cockcroft, M. G., "A method for the determination of the coefficient of friction of metals under conditions of bulk plastic deformation ", J. of the Inst. of Metals, Vol. 93, pp. 38-46, 1965.
[3] Male, A. T. and Depierre, V., "The validity of mathematical solutions for determining friction from the ring compression test", Journal of Lubrication Technology, pp. 389-397, 1970.
[4] Schey, J. A., "Metal deformation process friction and lubrication" American Society for Metals, Ohio, pp. 603-659, 1970.
[5] Lee, C. H. and Altan, T., "Influence of flow stress and friction upon metal flow in upset forging of rings and cylinders", Journal of Engineering for Industry, pp. 775-782, 1972.
[6] Pohlandt, K., "Upsetting test for determining flow curves after rastegaev" Ind.-Anz., Vol. 101, pp. 28-29., 1979.
[7] Schey, J. A. and Venner, T. R., "Shape changes in the upsetting of slender cylinders", Journal of Engineering for Industry, pp. 79-83, 1982.
[8] Lakshmipathy, R. and Sagar, R., "Effect of die surface topography on die-work interfacial friction in open die forging", Int J Mach Tools Manufact Vol.32, pp. 685–693, 1992.
[9] Xue, K. M., Lu, Y., Liu, H. H. and Zhao, X. M., "Numerical soulation and experimental research into the process of twist-compression forming", Advanced Technology of Plasticity, Vol.2, pp. 1065-1070, 1993.
[10] M. Geiger, U. Engel, S. Niederkom and M. Pfestorf, "Experimentalinvestigation of contact phenomena in cold forging", ICFG plenary meeting, 1995.
[11] Hsu, T. C. and Lee, C. H., "Realistic friction modeling for simple upsetting", Journal of Society of Tribologists and Lubrication, pp. 367 -373, 1997.
[12] S. Y. Lin, "Analysis of the dissimilar interface frictional constraints during", The International Journal of Advanced Manufacturing Technology, Vol. 13, No.9, pp. 601-610, 1997.
[13] Sofuoglu H. and Rasty J.,"On the measurement of friction coefficient utilizing the ring compression test", Tribology International,Vol. 32, pp. 327-335, 1999.
[14] Dutton, R. E., Seetharaman, V., Goetz, R. I., and Semiatin, S. L., "Effect of flow softening on ring test calibration curves", Materials Science and Engineering, Vol. 270, pp. 249-253, 1999.
[15] Hu, Z. M. and Dean, T. A., "A study of surface topography, friction and lubricants in metalforming", International Journal of Machine Tools and Manufacture, Vol. 40, pp. 1637-1649, 2000.
[16] Han, H., "Influence of material anisotropy and friction on ring deformation", Journal of Tribology, Vol.124, No. 3, pp. 637-644, 2002.
[17] Malayappan, S. and Narayanasamy, R., "An experimental analysis of upset forging of aluminium cylindrical billets considering the dissimilar frictional conditions at flat die surfaces", Int J Adv Manuf Sci Technol, vol 23, pp636–643, 2004.
[18] Y. G. An and H. Vegter, "Analytical and experimental study of frictional behavior in through-thickness compression test", Journal of Materials Processing Technology 160, 148–155, 2005.
[19] S. Malayappan and G. Esakkimuthu, "Barrelling of aluminium solidcylinders during cold upsetting with differential frictional conditions at the faces", The International Journal of Advanced Manufacturing Technology, Vol. 29, No.1-2, pp. 41-48, 2006.
[20] Sahin, M., Cetinarslan, C. S. and Akata, H. E., "Effect of surface roughness on friction coefficients duringupsetting processes for different materials", Materials and Design, Vol. 28, pp. 633-640, 2007.
[21] Cetinarslan, C. S., "Effect of aspect ratio on barreling contour and variation of total surface area during upsetting of cylindrical specimen", Materials and Design 28, pp. 1907-1913, 2007.
[22] Rao, J. B., Kamaluddin, S., Rao, J. A., Sarcar, M. M. M. and Bhargava, N. R. M. R., "Deformation behavior of Al-4Cu-2Mg alloy during cold upset forging", Journal of Alloys and Compounds, Vol. 471, pp. 128-136, 2009.
[23] Zhang, Z. J., Daia, G. Z., Wu, S. N., Dong, L. X. and Liu, L. L., "Simulation of 42CrMo steel billet upsetting and its defects analyses during forming process based on the software DEFORM-3D", Materials Science and Engineering :A, Vol. 499, pp. 49-52., 2009.
[24] Menezes, PL., Kumar, K., Kishore, R. and Kailas, SV., "Influence of friction during forming processes - a study using a numerical simulation technique", The International Journal of Advanced Manufacturing Technology, Vol. 40, pp. 1067-1076, 2009.
[25] H. L. Costa and I. M. Hutchings, "Effects of die surface patterning on lubrication in strip drawing", journal of materials processing technology 209, 1175–1180, 2009.
[26] ASTM B557M-84, "Standard methods of tension testing of wrought and cast aluminium and magnesium alloy products", Annual Book of ASTM Standards 02. 02., pp. 466-476, 1995.
[27] Hosford, R. M., and Caddle, R. M., "Metal forming mechanics and metallurgy", Prentice-Hall, Inc. A Division of Simom & Schuster Englewood Cliffs, NJ 07632, 1983.