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STM STUDY ON THE SURFACE RELIEF EFFECTS ASSOCIATED WITH WIDMANSTAT SAWTEETH |
BO Xiangzheng; XU Ning; FANG Hongsheng(Department of Materials Science and Engineering; Tsinghua University; Beijing 100084)Correspondent: BO Xiangzheng; Tel: (010)62782361; Fax: (010)62771160;E-mail. As -dms @m ailTsinghua. edu. cnManuscript received 1997-12-29; in revised form 1998-03-23 |
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Cite this article:
BO Xiangzheng; XU Ning; FANG Hongsheng(Department of Materials Science and Engineering; Tsinghua University; Beijing 100084)Correspondent: BO Xiangzheng; Tel: (010)62782361; Fax: (010)62771160;E-mail. As -dms @m ailTsinghua. edu. cnManuscript received 1997-12-29; in revised form 1998-03-23. STM STUDY ON THE SURFACE RELIEF EFFECTS ASSOCIATED WITH WIDMANSTAT SAWTEETH. Acta Metall Sin, 1998, 34(12): 1249-1254.
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Abstract Surface relief effects associated with the widmanstatten sawteeth in an Fe-0.37C(mass fraction,%) alloy were investigated by scanning tunneling microscopy (STM) for the firsttake. the relief of the widmanstatten sawteeth is made up of a group of platelets. The height ofthe relief is about 61-171 urn, which is lower than that of grain boundary allotriomorph fromwhich sawteeth devoloped. Configuration of face-to-face sympathetic nucleation was observed ingrain boundary allotriomorphs, and the maximum shape deformation of their reliefs is 0.39. Theformation of surface relief caused by sawteeth and allotriomorphs precipitation can be rationallyexplained by the ledgewise growth mechanism. Ledgewise groWth mechanlism is applied to explainqualitatively the formation of a tent-shaped, complex-shaped and single-tilt surface relief.
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1Dube C A, Aaronson HI, Mehl R F. Rev Met, 1958; 55: 20 2 Aaronson H I .In:Zackey V F.Aaronson H I.eds Decomposition of Austenite by Diffusional Processes.New York: Interscience Publishers, 1962: 387 3Aaronson H I.Laird C.Kinsman K R.Phase Transformations. Metals Park.Ohio:ASM,1970:313 4 Watson J D, McDougall P G. Acta Metall, 1973; 21: 961 5 Kinsman K R, Eichen E, Aaronson H I. Metall Trans. 1975; 6A: 303 6 hall M G, Aaronson H I.Metall Mater Trans ,1994; 25A: 1923 7薄样正,方鸿生,王家军,王峥华.金属学报,待发表(Bo X Z, Pang H S, Wang J J, Wang Z H. Acta Metall Sin.Accepted) 8 薄祥正,方鸿生 金属学报,待发表(BO X Z, Fang H S, Acta Metall Sin, Accepted) 9 Christian J W.In:Zackey V F,Aaronson H I eds:Decomposition of Austenite by Diffusional Proscesses. New York: Interscience, 1962: 371 10 Christian J W. Metall Mater Trans, 1994; 25A: 1821 11 Kurdjumow G V, Sachs G. Phwik Z, 1939; 64: 325 12 Binnig G, Rohrer H, Gerber Ch, WeibelE. Phys Rev Lett, 1982; 49: 57 13 Binnig G, ffehrer H. Snd SCi, 1983; 126: 236 14 Yamamoto M, Fujisawa T, Saburi T, Kurumisawa T, Kusao K. Surf Sci, 1992; 266: 289 15 Fang H S, Wang J J, Yang Z G, Li C M, Zheng Y K, Li C X. Metall Mater Trans,1996; 27A:1535 16 Wang J J, Fang H S, Zheng Y K, Yang Z G. ISIJ Int, 1995; 3s: 992 17 Yang Z G, Fang H S, Wang J J, Li C M. Zheng Y K. Phy Rev, 1995; B52: 7879 18 Swallow E,Bhadeshia H K D H.Mater Sci Technol.1996;12:121 19 Bo X z,Fang H S,Wang J J.Scr Metall.1997; 37:55s 20 Aaronson HI, Wells C. Trans AIME, 1956; 206: 1216 21 Aaronson HI, SPanos G, Masamura R A, Vardiman T G, Moon D W, Menon E S K, Hall M G. Mater SciEng,1995; B32:107 22 Wechsler M S, Lieberman D S, Read T A.J Met, 1953; 197: 1503 23 Bowles J S, Mackenzie J K. Acta Metall, 1954; 2: 129 24 Wayman C M. Metallography, 1975; 8: 105 25 Spanos G,Hall M G,Metall Mater Trans.1996;27A:1519 |
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