晶粒超细化能同时提高材料的强度和韧性,是新一代钢铁材料研究与开发所追求的重要目标,而超细晶粒高碳钢则是新一代钢铁材料中具有重要发展前景的高性能结构材料.综述了超细晶粒高碳钢细化技术的主要研究成果,简述了高碳钢组织超细化的具体工艺、适用条件及应用情况等,并从工业应用角度分析了现有超细晶粒高碳钢制备技术的主要问题和研究方向.
参考文献
[1] | 翁宇庆.超细晶钢-钢的组织细化理论与控制技术[M].北京:冶金工业出版社,2003:1. |
[2] | Hodgson P D;Hurley P J;Kelly G L.The formation of ultrafine ferrite in low C steels through thermomechanical processing[A].Tokyo:The ISIJ of Japan,2001:42. |
[3] | Maki T.Formation of ultrafine-grained structures by various thermomeehanical processing in steel[A].Beijing:The Chinese Society for Metals,2001:27. |
[4] | 黄青松,李龙飞,杨王玥,孙祖庆.共析钢的过冷奥氏体动态相变和组织超细化[J].金属学报,2007(07):724-730. |
[5] | 黄青松,杨王玥,孙祖庆.过冷对共析钢动态相变和组织演变的影响[J].材料研究学报,2007(06):593-598. |
[6] | 冯志明,杨王玥.冷轧退火对共析珠光体钢组织球化超细化的影响[J].北京科技大学学报,2007(07):689-693,711. |
[7] | 刘涛,杨王玥,陈国安,张湘义.共析钢温变形过程的组织球化与超细化[J].北京科技大学学报,2008(06):604-609. |
[8] | 陈伟,李龙飞,杨王玥,孙祖庆,何建平.过共析钢温变形过程中的组织演变Ⅰ.铁素体的等轴化及Al的影响[J].金属学报,2009(02):151-155. |
[9] | 陈伟,李龙飞,杨王玥,孙祖庆,张艳.过共析钢温变形过程中的组织演变Ⅱ.渗碳体的球化及Al的影响[J].金属学报,2009(02):156-160. |
[10] | Maki T;Furuhara T .Microstructure and mechanical propetty of ultra-fine(ferrite+cementite)duplex structure in high carbon steel[J].Materials Science Forum,2003,426-432:19. |
[11] | Furuhara T;Mizoguchi T;Maki T .Ultra-fine(α+β)duplex structure formed by cold rolling and annealing of pearlite[J].ISU Int,2005,45(03):392. |
[12] | Furuhara T;Yamaguchi T;Furimoto S et al.Formation of (ferrite+cementite)microduplex structure by warm deformation in high carbon steels[J].Materials Science Forum,2007,539-543:155. |
[13] | Segal V M;Reznikov V I;Drobyshevskiy A E et al.Plastic working by simple shear[J].Russian Metall,1981,1:99. |
[14] | Valiev R Z;Krasilnikov N A;Tsenev N K .Plastic deformation of alloys with submicrorrgrained structure[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1991,137:35. |
[15] | 黄俊霞,王经涛,张郑.珠光体组织的等径弯曲通道变形[J].材料研究学报,2005(02):200-206. |
[16] | Wang J T;Huang J X;De Z Z.Microstructure transformation in a pearlite steel during equal channel angular pressing[A].Charlotte,North Carolina,2004:673. |
[17] | 王立忠,王经涛,黄俊霞,郭成,陈金德.ECAP变形道次对珠光体钢中渗碳体球化的影响[J].材料科学与工艺,2006(01):25-27,56. |
[18] | 张郑,黄俊霞,王经涛,赵西成.用等径弯曲通道变形细化珠光体65Mn钢的组织[J].钢铁研究学报,2006(12):31-34. |
[19] | Ivanisenko Y .The mechanism of forrnation of nanostructure and dissolution of cementite in a pearlitic steel during high pressure torsion[J].Acta Materialia,2003,51:5555. |
[20] | Xiong Y;Sun SH;Li Y;Zhao J;Lv ZQ;Zhao DL;Zheng YZ;Fu WT .Effect of warm cross-wedge rolling on microstructure and mechanical property of high carbon steel rods[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1-2):152-157. |
[21] | 熊毅,赵文,孙淑华,吕知清,傅万堂.高碳钢中珠光体在温楔横轧过程中的组织演变[J].材料研究学报,2007(02):183-188. |
[22] | Sun S H;Xiong Y;Zhao J et al.Microstructure characteristics in high carbon steel rod after warm cross-wedge rolling[J].Scripta Materialia,2005,53:137. |
[23] | Xu Y;Liu Z G;Umemoto M et al.Formation and annealing behavior of nanocrystalline ferrite in Fe-0.89C spheroidite steel produced by ball milling[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2002,33:2195. |
[24] | Liu Z G et al.Electron-microscopy investigation on nanocrystal formation in pure Fe and carbon steal during hall milling[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2003,362(1-2):322. |
[25] | Umemoto M;Liu Z G;Tsuchiya K.Nano-ferrite formation in Fe-C alloys by ball milling[J].Int J Mater Product Techn,2001(S1):155. |
[26] | Liu Z G et al.Nanocrystal formation in a ball milled eutectoid steel[J].Scripta Materialia,2001,44(8-9):1775. |
[27] | Umemoto M;Huang B;Tsuchiya K et al.Forrnation of nanocrystalline structure in steels by ball drop test[J].Scripta Materialia,2002,46:383. |
[28] | Liu JL;Umemoto M;Todaka Y;Tsuchiya K .Formation of a nanocrystalline surface layer on steels by air blast shot peening[J].Journal of Materials Science,2007(18):7716-7720. |
[29] | Ohsaki S;Hono K;Hidaka H et al.Characterization of nanocrystalline ferrite produced by mechanical milling of pearlitic steel[J].Scripta Materialia,2005,52:271. |
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