将一种低碳结构钢循环加热淬火得到超细晶粒奥氏体,再以20℃/s的速率将其冷却至两相区进行真应变量为2的大变形,分析了形变后的瞬态组织.结果表明:用该工艺制备的超细晶奥氏体在两相区的高速大变形的后期,始终呈现应变硬化特征,并伴随有一定程度的形变诱导相变或铁素体动态再结晶等软化行为;同时,在较低温度快速大变形容易在试样的个别碳过饱和区导致应变诱导孪晶马氏体组织的生成,且随着形变温度降低孪晶马氏体量增加.循环加热淬火前的原始组织影响奥氏体内碳浓度分布,在一定程度上影响冷却变形过程的应力应变行为和形变后的瞬态组织.
参考文献
[1] | M.Niikura,M.Fujioka,Y.Adachi,A.Matsukura,T.Yokota,Y.Shirota,Y.Hagiwara,Now concepts for ultra refinement of grain size in Super Metal Project,Journal of Materials Processing Technology,117(3),341(2001) |
[2] | XUE Xiaohuai,SHAN Yiyin,ZHENG Lei,LOU Songnian,Microstructural characteristic of low carbon microalloyed steels produced by thermo-mechanical controlled process,Materials Science and Engineering A,438-440,285(2006) |
[3] | Y.Saito,H.Utsunomiya,N.Tsuji,T.Sakai,Novel ultrahigh straining process for bulk materials-development of the accumulative roll-bonding(ARB)process,Acta mater.,47(2),579(1999) |
[4] | N.Tsuji,R.Ueji,Y.Minamino,Y.Saito,A new and simpie process to obtain nano-structured bulk low-carbon steel with superior mechanical property,Scripta Materialia,46(4),305(2002) |
[5] | R.Z.Valiev,N.A.Krasilnikov,N.K.Tsenev,Plastic deformation of alloys with submicron-grained structure,Materials Science and Engineering A,137,35(1991) |
[6] | J.S.C.Jang,C.C.Koch,The hall-petch relationship in nanocrystalline iron produced by ball milling,Scripta Metallurgica et Materialia,24(8),1599(1990) |
[7] | N.R.Tao,M.L.Sui,J.Lu,K.Lu,Surface nanocrystallization of iron induced by ultrasonic shot peening,Nanostructured Materials,11(4),433(1999) |
[8] | P.Heilmann,W.A.T.Clark,D.A.Rigney,Orientation determination of subsurface cells generated by sliding,Acta Metallurgica,31(8),1293(1983) |
[9] | P.J.Hurley,P.D.Hodgson,B.C.Muddle,Analysis and characterisation of ultra-fine fetrite produced during a new steel strip rolling process,Scripta Materialia,40(4),433(1999) |
[10] | DU Linxiu,XIONG Mingxian,YAO Shengjie,LIU Xianghua,WANG Guodong,Submicron-crystallization of low carbon steel8 through transformation,Acta Metallurgica Sinica,43(1),59(2007)(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,金属学报,43(1),59(2007)) |
[11] | QI Junjie,YANG Wangyue,SUN Zuqiang,Ultra-fien ferrite formation during deformation of undercooled anstenite in a low carbon steel,Acta Metallurgica Sinica,38(9),897(2002)(齐俊杰,杨王玥,孙祖庆等,低碳钢过冷奥氏体形变过程超细铁素体的形成,金属学报,38(9),897(2002)) |
[12] | YANG Wangyue,HU Anmin,SUN Zuqing,Effect of anstenite grain size on strain enhanced transformation in a low carbon steel,Acta Metallurgica Sinica,36(10),1055(2000)(杨王玥,胡安民,孙祖庆,低碳钢奥氏体晶粒控制对形变诱导相变的影响,金属学报,36(10),1055(2000)) |
[13] | H.C.Choi,T.K.Ha,H.C.Shin,Y.W.Chang,The formation kinetics of deformation twin and deformation induced ε-martensite in an austenitic Fe-C-Mn steel,Scripta Mate rialia,40(10),1171(1999) |
[14] | S.H.Hong,Y.S.Han,The effects of deformation twins and strain-induced ε-martensite on mechanical properties of an Fe-32Mn-12Cr-0.4C cryogenic alloy,Scripta Metallur gica et Materialia,32(9),1489(1995) |
[15] | MI Zhenli,TANG Di,YAN Ling,GUO Jin,Study of high strength and high plasticity TWIP steel,Iron and Steel,40(1),58(2005)(米振莉,唐荻,严玲,郭锦,高强度高塑性TWIP钢的开发研究,钢铁,40(1),58(2005)) |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%