OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
CSP低碳钢的晶粒细化与强韧化
, PP. 647-651
Keywords: 薄板坯连铸连轧低碳钢,显微组织
Abstract:
生产统计表明成分与Q195接近的CSP工艺低碳钢ZJ330其屈服强度成倍提高,可达到310-410MPa,同时延伸率达到30%-45%.本文对CSP工艺生产的低碳钢板以及同一块钢坯经不同阶段轧制冷却后的试样进行了研究,应用TEM+XEDS技术在薄晶体和萃取复型试样中观察到沿晶界和亚晶界析出的许多细小氧化物和硫化物粒子.研究表明纳米级氧化物与硫化物沉淀粒子可阻碍晶粒长大,而微量杂质元素在晶界偏聚可以通过阻碍晶界迁移和降低γ-α转变温度而起到细化晶粒的作用,由沉淀和偏聚导致的有效晶粒尺寸减小是这类钢板强度与塑性同时大幅提高的重要原因之一.
References
[1] | MMaki T. Mater Jpn, 1997; 36: 937(牧 正志. 1997;36:937)
|
[2] | MMaki T. Tetsu to Hagane, 1995; 81: 547(牧 正志.铁钢、1995;81:547)
|
[3] | Tamura I, Ouchi C, Tanaka T, Sekine H, Translated by Wang G D, Liu Z Y, Xiong S B. Thermomechanical Pro
|
[4] | cessing of High Strength Low Alloy Steels. Beijing: Metallurgy Indurtry Press, 1992: 1
|
[5] | (田村今男、关根宽.田中智智.大内千秋著,王国栋,刘振宇、熊尚斌译. 高强度低台金钢的控制轧制与控制冷却.冶金工业出版社.1992:1)
|
[6] | LLiu D, Fu J, Kang Y L, Huo X D, Wang Y L, Chen N J.J Mat Sci Tech, 2002; 18(1): 7
|
[7] | WWang Z B, Li L J, Kang Y L, Liu D L, Fu J. Iron Steel,2001; 36(10): 33
|
[8] | (王中丙. 李烈军.康永林.柳得橹,傅 杰.钢铁,2001,36(10):33)
|
[9] | MMartin J W,Doherty R D.Stability of Microstructure
|
[10] | in Metallic Systems.Cambridge:Cambridge Univ Press,1976: 234
|
[11] | FFeng Y Q, liu H B, Zhao D L, Wang C Y. Proceedingsof Key Foundation Research of New Generation Iron and
|
[12] | Steel Material in China. 2000: 468
|
[13] | (冯艳全. 刘洪波,赵栋梁. 王崇愚,新一代钢铁材料重大基础研究论文集.2000:468)
|
[14] | WWang Z B, Xie L Q, Chai Y Z. In: Li H Q ed, CSM 2001 Annual Meeting Proceedings (First Part). Beijing: Metallurgical Industry Press, 2001: 411
|
[15] | (王中丙,谢立群、柴毅忠. 见:李慧卿主编.中国钢铁年会论文集(上卷).北京:冶金工业出版社,2001:411)
|
[16] | Martin J W, Doherty R D, Stability of Microstructure in Metallic Systems. Cambridge: Cambridge Univ Press, 1976: 132
|
[17] | Mclean D. Translated by Yang S H.Grain Boundary in Metals. Beijing: Science Press, 1965
|
[18] | (Mclean D著.杨顺华译.金属中的晶粒间界.科学出版社,1965)
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|