研究了0Cr32Ni7M04N双相不锈钢热轧后冷轧和直接冷轧的成形性能,分析了室温下α相和γ相的塑性变形机制以及经过热轧、冷轧及固溶处理后的组织演变规律,并测试了2种成形工艺冷轧板热处理后的力学性能和耐蚀性能,分别采用OM和SEM观察金相和腐蚀形貌.结果表明:实验钢在热轧后板边部开裂,切边后经热处理再冷轧,成形性良好;铸态钢坯经过1100℃固溶处理后直接冷轧,成形性能与其相当.室温下α相的变形机制为多系滑移形成位错胞状结构,γ相为单系滑移和机械孪晶;冷轧板随着热处理温度升高,组织变得更均匀,析出物颗粒数量减少;直接冷轧的钢板经热处理后,抗拉强度达到1082.9 MPa,延伸率为29.3%,在3.5%NaCl溶液中临界点蚀电位为1060 mV,经过65%HNO3溶液腐蚀后失重率为0.05 g/(m2·h),与常规热轧加冷轧后的钢板相当.
参考文献
[1] | Sato Y S,Nelson T W,Sterling C J,Steel R J,Pettersson C O.Mater Sci Eng,2005; A397:376 |
[2] | Han Y,Zou D N,Chen Z Y,Fan G W,Zhang W.Mater Charact,2011; 62:198 |
[3] | Badji R,Bouabdallah M,Bacroix B,Kahloun C,Belkessa B,Maza H.Mater Charact,2008; 59:447 |
[4] | Silva E M,Albuquerque V H C,Leite J P,Varela A C G,Moura E P D,Tavares J M.Mater SciEng,2009; A516:126 |
[5] | Chai G C,Kivisakk U,Tokaruk J,Eidhagen J.Stainless Steel World,2009; (03):27 |
[6] | Pinol-Juez A,Iza-Mendia A,Gutierrez I.MetallMater Trans,2000;31A:1671 |
[7] | Martin G,Yerra S K,Bréchet Y,Véron M,Mithieux J,Chéhab B,Delannay L,Pardoen T.Acta Mater,2012; 60:4646 |
[8] | Fang Y L,Liu Z Y,Song H M,Jiang L Z.Mater Sci Eng,2009;A526:128 |
[9] | Jorge A M,Reis G S,Balancin O.Mater Sci Eng,2011; A528:2259 |
[10] | Qin Y F,Jiang L Z,Song H M,Zhang W,Hu J C,Jin X J.J Iron Steel Res,2010; 22(8):45(秦焰锋,江来珠,宋红梅,张伟,胡锦程,金学军.钢铁研究学报,2010; 22(8):45) |
[11] | Marinelli M C,Degallaix S,Alvarez-Armas I.Mater Sci Eng,2006; A435:305 |
[12] | Farnoush H,Momeni A,Dehghani K,Mohandesi J A,Keshmiri H.Mater Des,2010; 31:220 |
[13] | Fan G W,Liu J,Han P D,Qiao G J.MaterSciEng,2009; A515:108 |
[14] | Bartali A,Evrard P,Aubin V,Heren U,Alvarez-Armas I,Armas A F,Degallaix-Moreuil S.Proc Eng,2010; 2:2229 |
[15] | Wang S T,Yang K,Shan Y Y,Li L F.Acta MetallSin,2007; 43:171(王松涛,杨柯,单以银,李来风.金属学报,2007; 43:171) |
[16] | Nibur KA,Bahr D F.ScrMater,2003; 49:1055 |
[17] | Song R B,Xiang J Y,Hou D P.J Univ Sci Technol Beijing,2013;35:55(宋仁伯,项建英,侯东坡.北京科技大学学报,2013; 35:55) |
[18] | Xiang H L,Huang W L,Liu D,He F S.Acta Metall Sin,2010; 46:304(向红亮,黄伟林,刘东,何福善.金属学报,2010; 46:304) |
[19] | Weisbrodt-Reisch A,Brummer M,Hadler B,Wolbank B,Werner EA.MaterSciEng,2006;A416:1 |
[20] | Zhao Z Y,Xu L,Li G P,Xue R D,Zheng J H.Trans Mater Heat Treat 2010; 31:75(赵志毅,徐林,李国平,薛润东,郑建华.材料热处理学报,2010;31:75) |
[21] | Moura V S,Lima L D,Pardal J M,Kina A Y,Corte R R A,Tavares S S M.MaterCharact,2008; 59:1127 |
[22] | Do Nascimento A M,Ierardi M,Kina A Y,Tavares S.Mater Charact,2008; 59:1736 |
[23] | Kim S,Lee I,Kim J,Jang S,Park Y,Kim K,Kim Y.Corros Sci,2012; 64:164 |
[24] | Tan H,Jiang Y,Deng B,Sun T,Xu J,Li J.Mater Charact,2009;60:1049 |
[25] | Ortiz N,Curiel F F,López V H,Ruiz A.Corros Sci,2013; 69:236 |
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