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·108· 工程科学学报,第38卷,增刊1 量增加而降低的趋势也越明显:而当w[C]>0.125% (桂赤斌高强度钢船体焊接工程技术.湖北:湖北科学技 或0[Al]>0.026%时,断面收缩率随Mn含量的增加 术出版社,2006) 开始上升,斜率也随之变大 [11]Zhang H,Lei Y T,Wei J S.Present situation and development tendency of the high strength hull structure steel.Steel Construc- 参考文献 iom,2004,19(2):38 (张豪,雷运涛,魏金山.高强度船体结构钢的现状与发展 [De Ardo A J.An investigation of the mechanism of splitting which 钢结构,2004,19(2):38) occurs in tensile specimens of high strength low alloy steels.Metall 02] General Administration of Quality Supervision,Inspection and Trans A,1997,8(3):473 Quarantine of the People's Republic of China.GB712-2011 Yue F,Bao Y P.Cui H,et al.Study on pureness of high level Ship and Ocean Engineering Structural Steel.Beijing:Standards ship plate produced by process of BOF-LF/VD-CC.J Unie Sci Press of China,2011 Technol Beijing,2007,29(Suppl 1):1 (中华人民共和国国家质量监督检验检疫总局.GB712一 (岳蜂,包燕平,崔衡,等.BOF-LF/VD-CC工艺生产高级船 2011船舶及海洋工程用结构钢.北京:中国标准出版社, 板钢纯净度的研究.北京科技大学学报,2007,29(增刊1): 2011) [13]Li HL.Guo H J,Zhang S Q,et al.The practice of production 3]Zhu P J.Liang J M.Experimental study on 16MnNb controlled optimization of DH36 high strength hull plate.J Functional Ma- rolling of wide-heavy steel plates.Jiangsu Metallurgy,2005,33 ter,2013,44(Suppl1):134 (5):25 (李洪亮,郭汉杰,张十庆,等.DH36高强度船板钢生产优 (朱鹏举,梁江民.16MnNb中厚钢板控轧工艺的实验研究 化.功能材料,2013,44(增刊1):134) 江苏治金,2005,33(5):25) [14]Dai Q X.Metal Material Science.Beijing:Chemical Industry 4]Han J,Ge L.Aanalysis of cause for layered fracture occuring dur- Press,2005 ing tensile test of high strength ship plate.Wide and Heary Plate, (戴起勋.金属材料学.北京:化学工业出版,2005) 2006,12(1):30 05] Zhao YT,Shang C J,Yang S W,et al.The metastable austen- (韩炯,葛亮.高强船板拉伸试验断口分层的原因分析.宽厚 ite transformation in Mo-Nb-B low carbon steel.Mater Sci Eng 板,2006,12(1):30) A,2006,433(1):169 [Wang H,Liu X L,Cai Q W.Effect of production processes on [16]Zhao ZZ,Tong TT,Zhao A M,et al.Effect of Mn and Si on low temperature toughness of 420 MPa high strength shipbuilding the microstructure and mechanical properties of medium manga- steel.Iron Steel,2006,41(8):64 nese hot-tolled high-strength steel.Unir Sci Technol Beijing, (王洪,刘小林,蔡庆伍.生产工艺对420MPa高强船板低温 2014,36(Suppl1):133 韧性的影响.钢铁,2006,41(8):64) (赵征志,佟婷婷,赵爱民,等.M和Si对中锰热轧高强钢 Hong S G.Jun HJ,Kang K B,et al.Evolution of precipitates in 组织和性能的影响.北京科技大学学报,2014,36(增刊1): the Nb-Ti-V microalloyed HSLA steels during reheating.Scripta 133) Materialia,2003,48(8):1201 [17]Liu X B.Dong JX,Xie X S.Influence of impurity elements- 7]Pereloma E V,Crawford B R,Hodgson P D.Strain-induced pre- phosphorus and sulfur in special steel.Special Steel,1998(3):1 cipitation behaviour in hot rolled strip steel.Mater Sci Eng A, (刘兴博,董建新,谢锡善.杂质元素磷、硫在特殊钢中的作 2001,299(1/2):27 用.特殊钢,1998(3):1) [8]Li Z S.Study on Microstructure and Property of 360 MPa Grade [18]Yin G L,Zhou L D,Lin C.Effect of the valence electron struc- Ship Plate Steel [Dissertation].Shandong:Shandong University, tures of phosphide on cold short in steel.Ordnance Material Sci- 2010 ence Engineering,2009,32(3):11 (李贞顺.360MPa级船板钢的组织与性能研究[学位论文] (尹桂丽,周立岱,林成.钢中磷化物的相价电子结构及其 山东:山东大学,2010) 对冷脆的影响.兵器材料科学与工程.2009,32(3):11) 9 Choudhary S K,Ghosh A.Mathematical model for prediction of [19]Li Y M,Zhu F X,Cui F P,et al.Analysis of forming mecha- composition of inclusions formed during solidification of liquid nism of lamination defect of steel.J Northeastern Unie Nat Sci, steel.1SJ1ntl,2009,49(12):1891 2007,28(7):1002 [10]Gui C B.Welding Engineering Technology of High Strength Ship- (李艳梅,朱伏先,崔风平,等.中厚钢板分层缺陷的形成机 building Steel.Hubei:Hubei Science and Technology Press, 制分析.东北大学学报:自然科学版,2007,28(7):1002) 2006工程科学学报,第 38 卷,增刊 1 量增加而降低的趋势也越明显; 而当 w[C]> 0. 125% 或 w[AlS ]> 0. 026% 时,断面收缩率随 Mn 含量的增加 开始上升,斜率也随之变大. 参 考 文 献 [1] De Ardo A J. An investigation of the mechanism of splitting which occurs in tensile specimens of high strength low alloy steels. Metall Trans A,1997,8( 3) : 473 [2] Yue F,Bao Y P,Cui H,et al. Study on pureness of high level ship plate produced by process of BOF--LF /VD--CC. J Univ Sci Technol Beijing,2007,29( Suppl 1) : 1 ( 岳峰,包燕平,崔衡,等. BOF--LF /VD--CC 工艺生产高级船 板钢纯净度的研究. 北京科技大学学报,2007,29( 增刊 1) : 1) [3] Zhu P J,Liang J M. Experimental study on 16MnNb controlled rolling of wide-heavy steel plates. Jiangsu Metallurgy,2005,33 ( 5) : 25 ( 朱鹏举,梁江民. 16MnNb 中厚钢板控轧工艺的实验研究. 江苏冶金,2005,33( 5) : 25) [4] Han J,Ge L. Aanalysis of cause for layered fracture occuring dur￾ing tensile test of high strength ship plate. Wide and Heavy Plate, 2006,12( 1) : 30 ( 韩炯,葛亮. 高强船板拉伸试验断口分层的原因分析. 宽厚 板,2006,12( 1) : 30) [5] Wang H,Liu X L,Cai Q W. Effect of production processes on low temperature toughness of 420 MPa high strength shipbuilding steel. Iron Steel,2006,41( 8) : 64 ( 王洪,刘小林,蔡庆伍. 生产工艺对 420 MPa 高强船板低温 韧性的影响. 钢铁,2006,41( 8) : 64) [6] Hong S G,Jun H J,Kang K B,et al. Evolution of precipitates in the Nb--Ti--V microalloyed HSLA steels during reheating. Scripta Materialia,2003,48( 8) : 1201 [7] Pereloma E V,Crawford B R,Hodgson P D. Strain-induced pre￾cipitation behaviour in hot rolled strip steel. Mater Sci Eng A, 2001,299( 1 /2) : 27 [8] Li Z S. Study on Microstructure and Property of 360 MPa Grade Ship Plate Steel [Dissertation]. Shandong: Shandong University, 2010 ( 李贞顺. 360 MPa 级船板钢的组织与性能研究[学位论文]. 山东: 山东大学,2010) [9] Choudhary S K,Ghosh A. Mathematical model for prediction of composition of inclusions formed during solidification of liquid steel. ISIJ Intl,2009,49( 12) : 1891 [10] Gui C B. Welding Engineering Technology of High Strength Ship￾building Steel. Hubei: Hubei Science and Technology Press, 2006 ( 桂赤斌. 高强度钢船体焊接工程技术. 湖北: 湖北科学技 术出版社,2006) [11] Zhang H,Lei Y T,Wei J S. Present situation and development tendency of the high strength hull structure steel. Steel Construc￾tion,2004,19( 2) : 38 ( 张豪,雷运涛,魏金山. 高强度船体结构钢的现状与发展. 钢结构,2004,19( 2) : 38) [12] General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China. GB712—2011 Ship and Ocean Engineering Structural Steel. Beijing: Standards Press of China,2011 ( 中华人民共和国国家质量监督检验检疫总局. GB712— 2011 船舶及海洋工程用结构钢. 北京: 中国标准出版社, 2011) [13] Li H L,Guo H J,Zhang S Q,et al. The practice of production optimization of DH36 high strength hull plate. J Functional Ma￾ter,2013,44( Suppl 1) : 134 ( 李洪亮,郭汉杰,张十庆,等. DH36 高强度船板钢生产优 化. 功能材料,2013,44( 增刊 1) : 134) [14] Dai Q X. Metal Material Science. Beijing: Chemical Industry Press,2005 ( 戴起勋. 金属材料学. 北京: 化学工业出版,2005) [15] Zhao Y T,Shang C J,Yang S W,et al. The metastable austen￾ite transformation in Mo--Nb--B low carbon steel. Mater Sci Eng A,2006,433( 1) : 169 [16] Zhao Z Z,Tong T T,Zhao A M,et al. Effect of Mn and Si on the microstructure and mechanical properties of medium manga￾nese hot-rolled high-strength steel. J Univ Sci Technol Beijing, 2014,36( Suppl 1) : 133 ( 赵征志,佟婷婷,赵爱民,等. Mn 和 Si 对中锰热轧高强钢 组织和性能的影响. 北京科技大学学报,2014,36( 增刊 1) : 133) [17] Liu X B,Dong J X,Xie X S. Influence of impurity elements￾phosphorus and sulfur in special steel. Special Steel,1998( 3) : 1 ( 刘兴博,董建新,谢锡善. 杂质元素磷、硫在特殊钢中的作 用. 特殊钢,1998( 3) : 1) [18] Yin G L,Zhou L D,Lin C. Effect of the valence electron struc￾tures of phosphide on cold short in steel. Ordnance Material Sci￾ence Engineering,2009,32( 3) : 11 ( 尹桂丽,周立岱,林成. 钢中磷化物的相价电子结构及其 对冷脆的影响. 兵器材料科学与工程. 2009,32( 3) : 11) [19] Li Y M,Zhu F X,Cui F P,et al. Analysis of forming mecha￾nism of lamination defect of steel. J Northeastern Univ Nat Sci, 2007,28( 7) : 1002 ( 李艳梅,朱伏先,崔凤平,等. 中厚钢板分层缺陷的形成机 制分析. 东北大学学报: 自然科学版,2007,28( 7) : 1002) · 801 ·
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