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通过温轧铁索体+珠光体组织获得两种渗碳体分布形态,并在300℃变形获得不同的位错密度,结合随后的快速升温至奥氏体低温区以及快冷后单道次轧制变形获得了铁索体晶粒尺寸为200~500 nm的亚微米晶钢,拉伸性能测试表明利用该工艺获得的样品除了具有很高的抗拉强度(>1000 MPa)之外,其屈强比相对较低,断后总伸长率≥20%.TEM观察发现,原始组织中渗碳体弥散分布的试样更容易在上述工艺下获得等轴亚微米晶铁素体以及适量板条马氏体和孪晶马氏体组织,而原始组织中渗碳体分布集中的试样其终态组织中等轴晶铁素体的比例显著减少,且铁素体晶内位错密度要低于前者.

Different morphology of cementite distribution in a low-carbon steel was obtained by different warm-rolling processes in dual phase region of ferrite and pearlite.Microstructure with ferrite grain size of 200 - 500 nm was observed in the warm-rolled steel after finish rolling at relative lower temperature in austenite region.Microstructure and mechanical properties of the steel were examined by means of SEM, TEM and tensile test.The results show that both of samples have high tensile strength (> 1000 MPa) , lower yield ration and total elongation ≥20% .TEM results indicate that equiaxial ferrite grains and certain amount of lath and/or twin martensite are prone to be obtained in the sample with diaperse cementite after finish rolling, while the proportion of equiaxial ferrite grains in the sample with concentrated cementite decreases significantly, and the dislocation density in ferrite grains is also less than that in the former.

参考文献

[1] Nagai K .Ultra-fine grained ferrite steel with dispersed cementite particles[J].Journal of Materials Processing Technology,2001,117:329-3332.
[2] Beladi H;Zarei-Hanzaki A;Kelly G L et al.Formation of ullraflne grained mierostructures in steel through strain induced transformation during single pass hot rolling[J].Materials Science and Technology,2004,20:213-2220.
[3] R. Priestner;Y. M. Al-Horr;A. K. Ibraheem .Effect of strain on formation of ultrafine ferrite in surface of hot rolled microalloyed steel[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2002(9):973-980.
[4] Zhang X J;Hedgeon P D;Thomson P F .The effect of through-thickness strain distribution on the static recrystallization of hot rolled anstenitic stainless steel strip[J].Journal of Materials Processing Technology,1996,60:615-619.
[5] 翁宇庆.钢铁结构材料的组织细化[J].钢铁,2003(05):1-11.
[6] Umemoto M .Nanocrystallization of steels by severe plastic deformation[J].MATERIALS TRANSACTIONS,2003,44(10):1900-11911.
[7] Zhao X;Jing TF;Gao YW;Qiao GY;Zhou JF;Wang W .Annealing behavior of nano-layered steel produced by heavy cold-rolling of lath martensite[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2005(1/2):117-121.
[8] Tsuji N;Ueji R;Minamino Y .Nanoscale erystallographic analysis of ultrafine grained IF steel fabricated by ARB process[J].Seripta Materialia,2002,47:69-76.
[9] Sagaredze V V;Danilehenko V E;Shahashov V A et al.The structure and properties of Fe-Ni alloys with a nanecrystalline austenite formed under different conditions of γ-α-γ transformations[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2002,337:146-1159.
[10] Shin D H;Park K T .Ultra-fine grained steels processed by equal channel angular pressing[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2005,410 -411:299-2302.
[11] Tsuchida N;Masuda H;Hareda Y et al.Effect of ferrite grain size on tensile deformation behavior of a ferrite-cementite low carbon steel[J].Materials Science and Engineering A,2008,488:446-4452.
[12] H. Beladi;G. L. Kelly;P. D. Hodgson .Ultrafine grained structure formation in steels using dynamic strain induced transformation processing[J].International Materials Reviews,2007(1):14-28.
[13] 杜林秀,熊明鲜,姚圣杰,刘相华,王国栋.利用相变进行低碳钢的亚微米化[J].金属学报,2007(01):59-63.
[14] 崔忠圻;刘北兴.金属学与热处理原理[M].哈尔滨:哈尔滨工业大学出版社,2001
[15] 徐洲;赵连诚.金属固态相变原理[M].北京:科学出版社,2004
[16] 约翰·J·伯克;沃克·威斯;王燕文;张永昌.超细晶粒金属[M].北京:国防工业出版社,1982
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