|
|
低碳钢应变时效过程模拟 |
赵九洲 B.C.De Cooman |
中国科学金属研究所;沈阳110016 |
|
引用本文:
赵九洲; B.C.De; Cooman . 低碳钢应变时效过程模拟[J]. 金属学报, 2002, 38(1): 27-30 .
[1] Cottrell A H, Bilby B A. Proc Phys Soc, 1949; 62A: 783 [2] Pradhan R. Metallurgy of Vacuum-Degassed Steel Prod-ucts. Warrendale, PA: The Minerals, Metals and Materi-als Society, 1990: 309 [3] Snick A V, Lips K, Vandeputte S, De Cooman B C, Dilewijns J. In: Bleck W ed., Modern Low Carbon andUltra Low Carbon Sheet Steels for Cold Forming: Pro-cessing and Properties, Vol.2, Aachen: Verlag Mainz Wis-senschaftsverlag, 1998: 413 [4] Messien P, Leroy V. Steel Res, 1989; 60: 320 [5] Hanai S, Takemoto N, Tokunaga Y, Mizuyama Y. Trans Iron Steel Inst Jpn, 1984; 24: 17 [6J Zhao J Z, De A K, De Cooman B C. [SfJ Int, 2000; 40: 725 [7] Hinchliffe C E, Smith G D W. Mater Sci Technol, 2001;17: 148 [8] Baird J D. Iron Steel, 1963; 36: 368 [9] Went C A. Phys Rev, 1950; 79: 601 [10] Kozeschnik E, Buchmayr B. Steel Reg, 1997; 68: 224 [11] McLean D. Grain Boundaries m Metals. Oxford: Claren-don Press, 1957: 116 [12] Ray S K. Metall Trans, 1991; 22A: 35[ |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|