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氮强化高锰奥氏体低温钢的拉伸应变硬化行为 |
付瑞东;邱亮;王存宇;郑炀曾 |
燕山大学;秦皇岛066004 |
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引用本文:
付瑞东; 邱亮; 王存宇; 郑炀曾 . 氮强化高锰奥氏体低温钢的拉伸应变硬化行为[J]. 材料研究学报, 2005, 19(2): 193-199.
1 T.S.Shimada, M.Kasamatsu, Advances in Cryogenic Engineering Materials, 30, 145(1984) 2 K.Suemune, K.Sugino, Advances in Cryogenic Engineering Materials, 32, 51(1986) 3 M.J.Strum, J.W.Morris Jr., Advances in Cryogenic Engineering Materials, 34, 371(1988) 4 H.Tancka, K.Fujita, Advanced in Cryogenic Engineering Materials, 38, 199(1992) 5 K.Nohara, S.Sato, Cryogenics, 34, 477(1994) 6 Y.Ozaki, O.Furukimi, IEEE Transactions on Applied Superconductivity, 12, 1248(2002) 7 J.W.Morris Jr., S.K.Wang, Advances in Cryogenic Engineering, 24, 91(1984) 8 Y.Tomoa, Y.Xin, K.Inoue, Acta Mater., 46, 1577(1998) 9 Fu Ruidong, Zheng Yangzeng, Li Shaohua, J. Iron and Steel Research, 1, 31(2000) 10 Fu Ruidong, Zheng Yangzeng, JMEPEG, 4, 456(2001) 11 K.Shibata, Y.Kobiki, Advances in Cryogenic Engineering Materials, 30, 153(1984) 12 G.K.Young, J.K.Han, Metall. Trans. A., 16A, 1689(1985) 13 G.K.Young, Y.L.Cha. Metall. Trans. A., 19A, 1625(1987) 14 J.W.Simmons, Acta Mater., 45, 2467(1997) 15 L.Kruger, L.W.Meyer, J.De Phy. IV., 9, 189(2003) 16 P.H.Adler, G.B.Olson, W.S.Owen, Metall. Trans. A., 17, 1725(1986) 17 A.Soussan, S.Degallaix, Mater. Sci. and Eng. A., A142, 169(1991) 18 T.S.Shun, C.M.Wan, J.G.Byrne, Acta Metall. Mater., 40, 3407(1992) 19 M.O.Speidel, P.J.Uggowitzer, ASM International, 135(1993) 20 S.Kubota, Y.Xia, Y.Tomota, ISIJ International, 38, 474(1998) 21 D.C.Ludwigson, Metall. Trans., 2, 2925(1971) 22 O.Grassel, L.Kruger, International Journal of Plasticity., 16, 1391(2000) 23 G.Frommeyer, P.Neumann, ISIJ International., 43, 438(2003) 24 J.M.Han, Y.G.Kim, Acta. Metall. Mater., 39, 2169(1991) 25 B.W.Oh, S.J.Cho, S.H.Hong, Advances in Cryogenic Engineering, 40, 1183(1994) |
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