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第4期 杨才福等:高强度含铜钢奥氏体连续冷却转变产物的强韧性 ·445· precipitation in copper-ontaining steels.J Mater Sci Lett,1998. and below the "bay region"of an Fe0.19Pct C2.30Pct Mo al- 17(24):2075 loy.Metall Trans A,1987,18 (12)2047 [8]Li C,Wang X M,Shang C J,et al.Effect of Cu content on pre- [15]Zhang Y Q,Zhang R J,Su H,et al.Effect of granular bainite cipitation during continuous cooling.Iron Steel,2011,46(8):73 on mechanical properties of microalloyed 10MnNiCr steel.fron (李闯,王学敏,尚成嘉,等。连续冷却过程中铜含量对析出 Seel,2003,38(11):45 的影响.钢铁,2011,46(8):73) (张永权,张荣久,苏航,等.粒状贝氏体对10 MnNiCr微合 9]Li C.Wang X M,Shang C J,et al.Study on precipitation behav- 金钢力学性能的影响.钢铁,2003,38(11):45) ior of phases containing Cu in the Cu-bearing steel in continuous [16]Nakashima K,Futamura Y,Tsuchiyama T.Interaction between cooling process.Acta Metall Sin,2010,46(12)1488 dislocation and copper particles in Fe-Cu alloys.IS//nt2002, (李闯,王学敏,尚成嘉,等.连续冷却过程中含C山相在钢中 42(12):1541 析出行为的研究.金属学报,2010,46(12):1488) [17]Perez M,Perrard F,Massardier V,et al.Low-emperature solu- [10]Urtsev V N,Mirzaev DA,Yakovlev I L.Transformation of aus- bility of copper in iron:experimental study using thermoelectric tenite in Fe-Cu alloys:IIl.Copper precipitation during cooling power,small angle X-ray seattering and tomographic atom probe. and holding of steels alloyed with copper.Phys Met Metallogr, Philos Mag,2005,85(20):2197 2008,105(5):477 [18]Li C,Wang X M,Shang C J,et al.Influence of microstructure [11]Das S,Chosh A,Chatterjee S,et al.Microstructural character- on precipitation of steel bearing copper.Mater Sci Technol, ization of controlled forged HSLA80 steel by transmission elec- 2011,19(4):6 tron microscopy.Mater Charact,2003,50(4/5):305 (李闯,王学敏,尚成嘉,等.组织对含铜钢中析出行为的影 [12]Varughese R,Howell P R.The application of metallographic 响.材料科学与工艺,2011,19(4):6) techniques to the study of the tempering of HSLA-00 steel.Ma- ǖ9] Gagliano M S,Fine M E.Characterization of the nucleation and ter Charac,1993,30(4):261 growth behavior of copper precipitates in low-abon steels.M- [13]Thompson S W,Colvin DJ,Krauss G.Austenite decomposition all Mater Trans A,2004,35(8):2323 during continuous cooling of an HSLA-80 plate steel.Metall Ma- D20]Holzera I,Kozeschnik E.Computer simulation of the yield ter Trans A,1996,27(6):1557 strength evolution in Cu-precipitation strengthened ferritic steel. [14]Tsubakino H,Aaronson H I.Ferrite and carbide morphologies in Mater Sci Eng A,2010,527(15):3546第 4 期 杨才福等: 高强度含铜钢奥氏体连续冷却转变产物的强韧性 precipitation in copper-containing steels. J Mater Sci Lett,1998, 17( 24) : 2075 [8] Li C,Wang X M,Shang C J,et al. Effect of Cu content on pre￾cipitation during continuous cooling. Iron Steel,2011,46( 8) : 73 ( 李闯,王学敏,尚成嘉,等. 连续冷却过程中铜含量对析出 的影响. 钢铁,2011,46( 8) : 73) [9] Li C,Wang X M,Shang C J,et al. Study on precipitation behav￾ior of phases containing Cu in the Cu-bearing steel in continuous cooling process. Acta Metall Sin,2010,46( 12) : 1488 ( 李闯,王学敏,尚成嘉,等. 连续冷却过程中含 Cu 相在钢中 析出行为的研究. 金属学报,2010,46( 12) : 1488) [10] Urtsev V N,Mirzaev D A,Yakovlev I L. Transformation of aus￾tenite in Fe-Cu alloys: III. Copper precipitation during cooling and holding of steels alloyed with copper. Phys Met Metallogr, 2008,105( 5) : 477 [11] Das S,Ghosh A,Chatterjee S,et al. Microstructural character￾ization of controlled forged HSLA-80 steel by transmission elec￾tron microscopy. Mater Charact,2003,50( 4 /5) : 305 [12] Varughese R,Howell P R. The application of metallographic techniques to the study of the tempering of HSLA-100 steel. Ma￾ter Charac,1993,30( 4) : 261 [13] Thompson S W,Colvin D J,Krauss G. Austenite decomposition during continuous cooling of an HSLA-80 plate steel. Metall Ma￾ter Trans A,1996,27( 6) : 1557 [14] Tsubakino H,Aaronson H I. Ferrite and carbide morphologies in and below the“bay region”of an Fe-0. 19Pct C-2. 30Pct Mo al￾loy. Metall Trans A,1987,18( 12) : 2047 [15] Zhang Y Q,Zhang R J,Su H,et al. Effect of granular bainite on mechanical properties of microalloyed 10MnNiCr steel. Iron Steel,2003,38( 11) : 45 ( 张永权,张荣久,苏航,等. 粒状贝氏体对 10MnNiCr 微合 金钢力学性能的影响. 钢铁,2003,38( 11) : 45) [16] Nakashima K,Futamura Y,Tsuchiyama T. Interaction between dislocation and copper particles in Fe-Cu alloys. ISIJ Int,2002, 42( 12) : 1541 [17] Perez M,Perrard F,Massardier V,et al. Low-temperature solu￾bility of copper in iron: experimental study using thermoelectric power,small angle X-ray scattering and tomographic atom probe. Philos Mag,2005,85( 20) : 2197 [18] Li C,Wang X M,Shang C J,et al. Influence of microstructure on precipitation of steel bearing copper. Mater Sci Technol, 2011,19( 4) : 6 ( 李闯,王学敏,尚成嘉,等. 组织对含铜钢中析出行为的影 响. 材料科学与工艺,2011,19( 4) : 6) [19] Gagliano M S,Fine M E. Characterization of the nucleation and growth behavior of copper precipitates in low-carbon steels. Met￾all Mater Trans A,2004,35( 8) : 2323 [20] Holzera I,Kozeschnik E. Computer simulation of the yield strength evolution in Cu-precipitation strengthened ferritic steel. Mater Sci Eng A,2010,527( 15) : 3546 ·445·
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