Please wait a minute...
Acta Metall Sin  1998, Vol. 34 Issue (5): 467-472    DOI:
Current Issue | Archive | Adv Search |
Cr YIELD AND OXIDATIONAL DEPHOSPHORIZATION DURING THE BATH SMELTING REDUCTION PROCESS
XU Kuangdi; JIANG Guochang; ZHANG Xiaobing; XU Jianlun (Shanghai Enhanced Laboratory of Ferrometallurgy; Shanghai University; Shanghai 200072)
Cite this article: 

XU Kuangdi; JIANG Guochang; ZHANG Xiaobing; XU Jianlun (Shanghai Enhanced Laboratory of Ferrometallurgy; Shanghai University; Shanghai 200072). Cr YIELD AND OXIDATIONAL DEPHOSPHORIZATION DURING THE BATH SMELTING REDUCTION PROCESS. Acta Metall Sin, 1998, 34(5): 467-472.

Download:  PDF(526KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The pilot test of bath smelting reduction process producing stainless master alloy was carried out in a 15 t complex blowing converter. It was found that the yield of chromium is not high and the master alloy contains too much phosphorous. It indicates that the bath smelting reduction process producing stainless master alloy is indeed a process of [C] - [Cr] selective oxidational dephosphorization procedure. Essentially, it is a selective oxidation among [C]-[Cr]-[P]elements. Based on the model of SELF-SReM4, these two problems were discussed quantitatively in this paper.
Key words:  stainless steel      bath smelting reduction process      dephosphorization      sub-regular melt model     
Received:  18 May 1998     
Service
E-mail this article
Add to citation manager
E-mail Alert
RSS
Articles by authors

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y1998/V34/I5/467

1侯树庭,徐明华,张怀君,杨兴林,徐匡迪,蒋国昌,徐建伦,张晓兵.钢铁,1995;30(8):16(Hou Shuting,Xu Minghua ,Zhang Huaijun,Yang Xinglin,Xu Kuangdi,Jiang Guochang,Xu Jianlun,Zhang Xiaobing. Iron and Steel, 1995; 30(8): 16)
2Jiang G C,Pei W G,Borinder T,Gustakson S.Proceedtngs of Shenyang International Symp on Smelting Reduction, Shenysng, 1986: 173
3竹内秀次,仲村秀夫.桉谷敏和,藤井澈也 野崎努.铁钢,1990;76:1847(Takeuchi Shuji,Nakamura Hideo,Sakuraya Toshikazu,Fuji Tetsuya,Nozaki Tsutomu.Tetsu Hagane,1990: 76:1847)
4Marukawa K,Anezaki S,Hirate Y,Ishikawa M.Proceedings of Shengang International Symp on Smelting Reduction, Shenyang, 1986: 304
5Zhanan X B, Jiann G C, Tang K, Xu J L, Ding W Z, Xu K D. Calphad, 1997; 21(3)
6田冈启造,多田睦,山田纯夫,野村宽,大西正之,马田一.铁钢,1990;76:1863(Taoka Keizo,Tada Chikashi,Yamada Sumio,Nomura Hiroshi,Ohnishi Masayuki,Bada Hajime.Tetsu Hagane,1990; 76:1863)
[1] WANG Bin, NIU Mengchao, WANG Wei, JIANG Tao, LUAN Junhua, YANG Ke. Microstructure and Strength-Toughness of a Cu-Contained Maraging Stainless Steel[J]. 金属学报, 2023, 59(5): 636-646.
[2] HOU Juan, DAI Binbin, MIN Shiling, LIU Hui, JIANG Menglei, YANG Fan. Influence of Size Design on Microstructure and Properties of 304L Stainless Steel by Selective Laser Melting[J]. 金属学报, 2023, 59(5): 623-635.
[3] HAN En-Hou, WANG Jianqiu. Effect of Surface State on Corrosion and Stress Corrosion for Nuclear Materials[J]. 金属学报, 2023, 59(4): 513-522.
[4] WU Xinqiang, RONG Lijian, TAN Jibo, CHEN Shenghu, HU Xiaofeng, ZHANG Yangpeng, ZHANG Ziyu. Research Advance on Liquid Lead-Bismuth Eutectic Corrosion Resistant Si Enhanced Ferritic/Martensitic and Austenitic Stainless Steels[J]. 金属学报, 2023, 59(4): 502-512.
[5] CHANG Litao. Corrosion and Stress Corrosion Crack Initiation in the Machined Surfaces of Austenitic Stainless Steels in Pressurized Water Reactor Primary Water: Research Progress and Perspective[J]. 金属学报, 2023, 59(2): 191-204.
[6] WEN Donghui, JIANG Beibei, WANG Qing, LI Xiangwei, ZHANG Peng, ZHANG Shuyan. Microstructure Evolution at Elevated Temperature and Mechanical Properties of MoNb-Modified FeCrAl Stainless Steel[J]. 金属学报, 2022, 58(7): 883-894.
[7] ZHENG Chun, LIU Jiabin, JIANG Laizhu, YANG Cheng, JIANG Meixue. Effect of Tensile Deformation on Microstructure and Corrosion Resistance of High Nitrogen Austenitic Stainless Steels[J]. 金属学报, 2022, 58(2): 193-205.
[8] YUAN Jiahua, ZHANG Qiuhong, WANG Jinliang, WANG Lingyu, WANG Chenchong, XU Wei. Synergistic Effect of Magnetic Field and Grain Size on Martensite Nucleation and Variant Selection[J]. 金属学报, 2022, 58(12): 1570-1580.
[9] LUO Wenze, HU Long, DENG Dean. Numerical Simulation and Development of Efficient Calculation Method for Residual Stress of SUS316 Saddle Tube-Pipe Joint[J]. 金属学报, 2022, 58(10): 1334-1348.
[10] PAN Qingsong, CUI Fang, TAO Nairong, LU Lei. Strain-Controlled Fatigue Behavior of Nanotwin- Strengthened 304 Austenitic Stainless Steel[J]. 金属学报, 2022, 58(1): 45-53.
[11] CAO Chao, JIANG Chengyang, LU Jintao, CHEN Minghui, GENG Shujiang, WANG Fuhui. Corrosion Behavior of Austenitic Stainless Steel with Different Cr Contents in 700oC Coal Ash/High Sulfur Flue-Gas Environment[J]. 金属学报, 2022, 58(1): 67-74.
[12] AN Xudong, ZHU Te, WANG Qianqian, SONG Yamin, LIU Jinyang, ZHANG Peng, ZHANG Zhaokuan, WAN Mingpan, CAO Xingzhong. Interaction Mechanism of Dislocation and Hydrogen in Austenitic 316 Stainless Steel[J]. 金属学报, 2021, 57(7): 913-920.
[13] CHEN Guo, WANG Xinbo, ZHANG Renxiao, MA Chengyue, YANG Haifeng, ZHOU Li, ZHAO Yunqiang. Effect of Tool Rotation Speed on Microstructure and Properties of Friction Stir Processed 2507 Duplex Stainless Steel[J]. 金属学报, 2021, 57(6): 725-735.
[14] HUANG Yichuan, WANG Qing, ZHANG Shuang, DONG Chuang, WU Aimin, LIN Guoqiang. Optimization of Stainless Steel Composition for Fuel Cell Bipolar Plates[J]. 金属学报, 2021, 57(5): 651-664.
[15] WANG Jinliang, WANG Chenchong, HUANG Minghao, HU Jun, XU Wei. The Effects and Mechanisms of Pre-Deformation with Low Strain on Temperature-Induced Martensitic Transformation[J]. 金属学报, 2021, 57(5): 575-585.
No Suggested Reading articles found!