Please wait a minute...
Acta Metall Sin  2011, Vol. 47 Issue (7): 816-822    DOI: 10.3724/SP.J.1037.2011.00158
论文 Current Issue | Archive | Adv Search |
EFFECTS OF NITROGEN CONTENT ON MICROSTRUCTURE AND MECHANICAL PROPERTY OF ALLOY 690
LI Shuo, CHEN Bo, MA Yingche, GAO Ming, LIU Kui
Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016
Cite this article: 

LI Shuo CHEN Bo MA Yingche GAO Ming LIU Kui. EFFECTS OF NITROGEN CONTENT ON MICROSTRUCTURE AND MECHANICAL PROPERTY OF ALLOY 690. Acta Metall Sin, 2011, 47(7): 816-822.

Download:  PDF(1292KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The microstructure and mechanical property at room temperature of Ni-30Cr-10Fe-xN (x=0.001, 0.011, 0.018, 0.030, mass fraction, %) base alloy 690 were investigated. The OM observation shows that the amounts of precipitated nitrides and the annealing twins in the matrix increase with more nitrogen added in the alloy. The carbide precipitation along boundary and the chromium depletion near the grain boundary are modified by nitrogen addition, carbide becomes less and chromium depletion is mitigated. The tensile test result shows that both of the yield and tensile strengths are increased by about 50 MPa when nitrogen content increased from 0.001% to 0.030%, while the ductility lowers a little. The fractographs exhibit typical ductile dimple pattern and the sizes of the dimples reduce with increasing nitrogen content in the alloy.
Key words:  Ni-Cr-Fe-N alloy      mechanical property      carbide precipitation      Cr depletion      microstructure     
Received:  23 March 2011     
Fund: 

Supported by National Natural Science Foundation of China (No.50901076)

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2011.00158     OR     https://www.ams.org.cn/EN/Y2011/V47/I7/816

[1] Kai J J, Liu M N. Scr Metall, 1989; 23: 17

[2] Sarver J M, Crum J R, MankinsWL. Corros NACE, 1988; 44: 288

[3] Fuchs G E, Haydon S Z. Scr Metall Mater, 1991; 25: 1483

[4] Kai J J, Tsai C H, Huang T A, Liu M N. Metall Trans, 1989; 20A: 1077

[5] Dutta R S, Tewari R, De P K. Corros Sci, 2007; 49: 303

[6] Zhu H, Dong J X, Zhang M C, Hu Y H, Xie X S. J Univ Sci Technol Beijing, 2002; 24: 511

(朱红, 董建新, 张麦仓, 胡尧和, 谢锡善. 北京科技大学学报, 2002; 24: 511)

[7] Lu Y, Qin X B. Boiler Manufactur, 1994; 154: 54

(鲁 悦, 秦绪斌. 锅炉制造, 1994; 154: 54)

[8] Mudali U K, Baldev R, Translated by Li J, Huang Y H. High Nitrogen Steels and Stainless Steels-Manufacturing, Properties and Applications. Beijing: Chemical Industry Press, 2006: 48

(Mudali U K, Baldev R著; 李晶, 黄运华  译. 高氮钢和不锈钢---生产, 性能与应用. 北京: 化学工业出版社, 2006: 48)

[9] Simmons J W. Mater Sci Eng, 1996; A207: 159

[10] Reed R P. JOM, 1989; 3: 16

[11] Rhodes G O, Conway J J. JOM, 1996; 4: 28

[12] Levey P R, van Bennekom A. Corrosion, 1995; 51: 911

[13] Thuvander M, Stiller K, Olsson E. Mater Sci Technol, 1999; 15: 237

[14] Liu K, Hao X C, Gao M, Li S, Li Y Y, Wan B F. Proc 17th Int Conf Nuclear Engineering, Three Park Avenue, New York, 2010 (CD–ROM)

[15] Dutta R S, Lobo A, Purandare R, Kulkarni S K, Dey G K. Metall Mater Trans, 2002; 33A: 1437

[16] Meng F J, Wang J Q, Han E H, Ke W. Corros Sci, 2010; 52: 927

[17] Abdulranhan R F, Hendry A. Metall Mater Trans, 2001; 32B: 1103

[18] Mitchell A. Acta Metall Sin (Engl Lett), 2005; 18: 575

[19] Simmons J W, Covino B S, Hawk J A. ISIJ Int, 1996; 36: 846

[20] Degallaix S, Foct J, Hendry A. Mater Sci Technol, 1986; 2: 946

[21] Pande C S, Rath B B, Imam M A. Mater Sci Eng, 2004; A367: 171

[22] Pande C S, Imam M A. Mater Sci Eng, 2009; A512: 82
[1] GONG Shengkai, LIU Yuan, GENG Lilun, RU Yi, ZHAO Wenyue, PEI Yanling, LI Shusuo. Advances in the Regulation and Interfacial Behavior of Coatings/Superalloys[J]. 金属学报, 2023, 59(9): 1097-1108.
[2] ZHENG Liang, ZHANG Qiang, LI Zhou, ZHANG Guoqing. Effects of Oxygen Increasing/Decreasing Processes on Surface Characteristics of Superalloy Powders and Properties of Their Bulk Alloy Counterparts: Powders Storage and Degassing[J]. 金属学报, 2023, 59(9): 1265-1278.
[3] WANG Lei, LIU Mengya, LIU Yang, SONG Xiu, MENG Fanqiang. Research Progress on Surface Impact Strengthening Mechanisms and Application of Nickel-Based Superalloys[J]. 金属学报, 2023, 59(9): 1173-1189.
[4] ZHANG Leilei, CHEN Jingyang, TANG Xin, XIAO Chengbo, ZHANG Mingjun, YANG Qing. Evolution of Microstructures and Mechanical Properties of K439B Superalloy During Long-Term Aging at 800oC[J]. 金属学报, 2023, 59(9): 1253-1264.
[5] LU Nannan, GUO Yimo, YANG Shulin, LIANG Jingjing, ZHOU Yizhou, SUN Xiaofeng, LI Jinguo. Formation Mechanisms of Hot Cracks in Laser Additive Repairing Single Crystal Superalloys[J]. 金属学报, 2023, 59(9): 1243-1252.
[6] ZHANG Jian, WANG Li, XIE Guang, WANG Dong, SHEN Jian, LU Yuzhang, HUANG Yaqi, LI Yawei. Recent Progress in Research and Development of Nickel-Based Single Crystal Superalloys[J]. 金属学报, 2023, 59(9): 1109-1124.
[7] LI Jingren, XIE Dongsheng, ZHANG Dongdong, XIE Hongbo, PAN Hucheng, REN Yuping, QIN Gaowu. Microstructure Evolution Mechanism of New Low-Alloyed High-Strength Mg-0.2Ce-0.2Ca Alloy During Extrusion[J]. 金属学报, 2023, 59(8): 1087-1096.
[8] CHEN Liqing, LI Xing, ZHAO Yang, WANG Shuai, FENG Yang. Overview of Research and Development of High-Manganese Damping Steel with Integrated Structure and Function[J]. 金属学报, 2023, 59(8): 1015-1026.
[9] LIU Xingjun, WEI Zhenbang, LU Yong, HAN Jiajia, SHI Rongpei, WANG Cuiping. Progress on the Diffusion Kinetics of Novel Co-based and Nb-Si-based Superalloys[J]. 金属学报, 2023, 59(8): 969-985.
[10] DING Hua, ZHANG Yu, CAI Minghui, TANG Zhengyou. Research Progress and Prospects of Austenite-Based Fe-Mn-Al-C Lightweight Steels[J]. 金属学报, 2023, 59(8): 1027-1041.
[11] SUN Rongrong, YAO Meiyi, WANG Haoyu, ZHANG Wenhuai, HU Lijuan, QIU Yunlong, LIN Xiaodong, XIE Yaoping, YANG Jian, DONG Jianxin, CHENG Guoguang. High-Temperature Steam Oxidation Behavior of Fe22Cr5Al3Mo-xY Alloy Under Simulated LOCA Condition[J]. 金属学报, 2023, 59(7): 915-925.
[12] YUAN Jianghuai, WANG Zhenyu, MA Guanshui, ZHOU Guangxue, CHENG Xiaoying, WANG Aiying. Effect of Phase-Structure Evolution on Mechanical Properties of Cr2AlC Coating[J]. 金属学报, 2023, 59(7): 961-968.
[13] GUO Fu, DU Yihui, JI Xiaoliang, WANG Yishu. Recent Progress on Thermo-Mechanical Reliability of Sn-Based Alloys and Composite Solder for Microelectronic Interconnection[J]. 金属学报, 2023, 59(6): 744-756.
[14] WU Dongjiang, LIU Dehua, ZHANG Ziao, ZHANG Yilun, NIU Fangyong, MA Guangyi. Microstructure and Mechanical Properties of 2024 Aluminum Alloy Prepared by Wire Arc Additive Manufacturing[J]. 金属学报, 2023, 59(6): 767-776.
[15] ZHANG Deyin, HAO Xu, JIA Baorui, WU Haoyang, QIN Mingli, QU Xuanhui. Effects of Y2O3 Content on Properties of Fe-Y2O3 Nanocomposite Powders Synthesized by a Combustion-Based Route[J]. 金属学报, 2023, 59(6): 757-766.
No Suggested Reading articles found!