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采用BC方式通过等径弯曲通道变形(Equal Channel Angular Pressing,简称ECAP)法制备了铁素体晶粒尺寸约0.30μm的超低碳钢试样,研究了退火温度对ECAP变形组织的影响.结果表明,随退火温度升高,ECAP变形获得的亚微晶铁素体变形组织在原位逐渐演变为再结晶组织.300~500℃×1h退火时,亚微晶铁素体组织稳定,晶粒无明显长大.退火温度高于500℃后,铁素体晶粒开始明显长大,650℃退火后的铁素体平均晶粒尺寸约8.70μm.

参考文献

[1] Valiey R Z;Islamgaliev R K;Alexandrov I V .Bulk nanostructured materials from severe plastic deformation[J].Progress in Materials Science,2000,45(02):103-189.
[2] Y.Iwahashi;Z.Horita;M.Nemoto .An investigation of microstructural evolution during equal-channel angular pressing[J].Acta materialia,1997(11):4733-4741.
[3] DONG HYUK SHIN;INYOUNG KIM;JONGRYOUL KIM .GRAIN REFINEMENT MECHANISM DURING EQUAL-CHANNEL ANGULAR PRESSING OF A LOW-CARBON STEEL[J].Acta materialia,2001(7):1285-1292.
[4] Neishi K.;Horita Z.;Langdon TG. .Grain refinement of pure nickel using equal-channel angular pressing[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):54-58.
[5] Dayan Ma;Jingtao Wang;Kewei Xu .Equal channel angular pressing of a SiC_w reinforced aluminum-based composite[J].Materials Letters,2002(6):999-1002.
[6] Kim I.;Kim J.;Shin DH.;Lee CS.;Hwang SK. .Effects of equal channel angular pressing temperature on deformation structures of pure Ti[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):302-310.
[7] 杨钢,刘正东,林肇杰,程世长,董瀚.用等径角挤压变形法制备纳米晶金属结构材料的组织演变[J].钢铁,2003(12):38-42.
[8] 刘腾,张伟,吴世丁,姜传斌,李守新,徐永波.双相合金Mg-8Li-1Al的等通道转角挤压Ⅱ.挤压后合金的室温拉伸性能[J].金属学报,2003(08):795-798.
[9] 赵西成,王媛,王经涛.Q235钢C方式等径弯曲通道变形及组织研究[J].热加工工艺,2005(01):5-7.
[10] Shin D. H.;Kim B. C. .MICROSTRUCTURAL CHANGES IN EQUAL CHANNEL ANGULAR PRESSED LOW CARBON STEEL BY STATIC ANNEALING[J].Acta materialia,2000(12):3245-3252.
[11] 王立忠,王经涛,王媛,郭成,陈金德.等径弯曲通道变形制备超细晶低碳钢的热稳定性[J].材料热处理学报,2004(02):11-14.
[12] 张玉敏,丁桦,孝云祯,杨春征.等径弯曲通道变形(ECAP)的研究现状及发展趋势[J].材料与冶金学报,2002(04):258-262.
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