|
|
基于屈服平台理论开发的600 MPa级高强塑性螺纹钢的研究* |
李小龙1, 郭正洪1( ), 戎咏华1, 吴海洋2, 姚圣法2 |
1 上海交通大学材料科学与工程学院, 上海 200240 2 江苏天舜金属材料集团有限公司, 扬中 212200 |
|
600 MPa GRADE REBAR WITH HIGH DUCTILITY DEVELOPED BASED ON THEORY OF YIELD PLATEAU |
LI Xiaolong1, GUO Zhenghong1( ), RONG Yonghua1, WU Haiyang2, YAO Shengfa2 |
1 School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240 2 Tianshun Group of Jiangsu, Yangzhong 212200 |
引用本文:
李小龙, 郭正洪, 戎咏华, 吴海洋, 姚圣法. 基于屈服平台理论开发的600 MPa级高强塑性螺纹钢的研究*[J]. 金属学报, 2014, 50(4): 439-446.
Xiaolong LI,
Zhenghong GUO,
Yonghua RONG,
Haiyang WU,
Shengfa YAO.
600 MPa GRADE REBAR WITH HIGH DUCTILITY DEVELOPED BASED ON THEORY OF YIELD PLATEAU[J]. Acta Metall Sin, 2014, 50(4): 439-446.
[1] |
Bannister A C. Contribution to Sub-Task 2.3: Assessment of the Occurrence and Significance of Yield Plateaus in Structural Steels. Report No.SINTAP/BS/19, Brite-Euram BE 95-1426, Rotherham: British Steel Plc, 1998: 7
|
[2] |
Kot R A, Morris J W. Structure and Properties of Dual-Phase Steels. New York: The Metallurgical Society of AIME, 1979: 304
|
[3] |
Kumar A, Singh S B, Ray K K. Mater Sci Eng, 2008; A474: 270
|
[4] |
Cottrell A H, Bilby B A. Proc Phys Soc, 1949; 62A: 49
|
[5] |
Hale K F, McLean D. J Iron Steel Inst, 1963; 201: 337
|
[6] |
Tekin E, Kelly P M. J Iron Steel Inst, 1965; 203: 715
|
[7] |
Dollins C, Wert C. Acta Metall, 1969; 17: 711
|
[8] |
Cottrell A H, Stokes R J. Proc Roy Soc, 1955; 233A: 17
|
[9] |
Tsuchida N, Tomota Y, Nagai K, Fukaura K. Scr Mater, 2006; 54: 57
|
[10] |
Fujita H, Miyazaki S. Acta Metall, 1978; 26: 1273
|
[11] |
Schulson E M, Weihs T P, Viens D V, Baker I. Acta Metall, 1985; 33: 1587
|
[12] |
Hall E O. Yield Point Phenomena in Metals and Alloys. London: Macmillan, 1970: 31
|
[13] |
Hall E O. Proc Phys Soc London, 1951; 64B: 747
|
[14] |
Petch N J. J Iron Steel Inst, 1953; 174: 25
|
[15] |
Wen C S, Rong Y H, Xu Z Y. Trans Mater Heat Treat, 2004; 25: 161
|
[16] |
Tsuji N, Ito Y, Saito Y, Minamino Y. Scr Mater, 2002; 47: 893
|
[17] |
Takaki S, Kawasaki K, Kimura Y. J Mater Proc Technol, 2001; 117: 359
|
[18] |
Song R, Ponge D, Raabe D. Acta Mater, 2005; 53: 4881
|
[19] |
Tsuji N, Kamikawa N, Ueji R, Takata N, Koyama H, Terada D. ISIJ Int, 2008; 48: 1114
|
[20] |
Tsuchida N, Masuda H, Harada Y, Fukaura K, Tomota Y, Nagai K. Mater Sci Eng, 2008; A488: 446
|
[21] |
Zhao M, Yin F, Hanamura T, Nagai K, Atrens A. Scr Mater, 2007; 57: 857
|
[22] |
Miller R L. Metall Trans, 1972; 3: 905
|
[23] |
Shu D L. Mechanical Property of Engineering Materials. Beijing: Mechanical Industry Press, 2003: 19
|
[23] |
(束德林. 工程材料力学性能. 北京: 机械工业出版社, 2003: 19)
|
[24] |
Schwarb R, Ruff V. Acta Mater, 2013; 61: 1798
|
[25] |
Hu G X,Cai X,Rong Y H. Fundamentals of Materials Science. 2nd Ed., Shanghai: Shanghai Jiao Tong University Press, 2006: 180
|
[25] |
(胡赓祥,蔡 珣,戎咏华. 材料科学基础. 第二版, 上海: 上海交通大学出版社, 2006: 180)
|
[26] |
Chen N L, Rong Y H, Zuo X W, Guo Z H. Chin Pat, ZL 2011 1 0453958.2, 2013
|
[26] |
(陈乃录, 戎咏华, 左训伟, 郭正洪. 中国专利, ZL 2011 1 0453958.2, 2013)
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|