Please wait a minute...
中国腐蚀与防护学报  1995, Vol. 15 Issue (1): 7-14    
  研究报告 本期目录 | 过刊浏览 |
奥氏体不锈钢在高温磷酸浓溶液中的阳极极化行为
周庆初;曹铁梁;季诚建
中国科学院上海冶金研究所;浙江省新安江化工集团股份有限公司
ANODIC POLARIZATION BEHAVIOUR OF TYPE 904L AUSTENITIC STAINLESS STEEL IN HOT CONCENTRATED PHOSPHORIC ACID SOLUTION
Zhou Qingchu; Cao Tieliang(Shanghai Institute of Metallurgy; Chinese Academy of Sciences)Ji Chengjian(Zhejiang Xin'anjian Chemical Industrial Groan Corporation Ltd.)
全文: PDF(725 KB)  
摘要: 测量了奥氏体不锈钢904L在140℃、85%磷酸溶液中的阳极极化曲线,讨论了不同电位区域内的阳极极化行为,并用交流阻抗法研究了不同电位区域内钝化膜的阻抗行为.在活化-钝化过渡区,阻抗谱的高频部分为容抗弧,在低频出现扩散控制现象.在稳定钝化区;阻抗谱由容抗半圆组成,受表面钝化膜的生长和溶解过程所控制.在该区域内,钝化膜的阻抗值达到最大,弥散系数和膜电容值达到最小,表明所生成的钝化膜的耐蚀性好,致密度高,膜较厚且表面均匀.在过钝化区,高频容抗弧的直径大为减小,说明由于过钝化溶解,膜的耐蚀性大大下降;低频出现两个感抗弧,说明出现了阴离子的吸附.阳极充电曲线和电位衰减曲线的结果表明在稳定钝化区内,膜的组织和成分应该是均匀的;钝化膜的生长电位越高,膜越稳定.综上结果表明奥氏体不锈钢在高温磷酸浓溶液中实施阳极保护具有保护电位范围宽(0.3~0.8V,SCE),钝化膜稳定等优点.磷酸的温度越低,保护效果越明显.
关键词 904L不锈钢磷酸阳极极化阳极保护    
Abstract:The anodic polarization behaviour of type 904L austenitic stainless steel in 85Wt% H3PO4 at 140℃ was investigated using polarization curves, anodic charge curves, potential decay curves and electrochemical impedance spectra. The anodic polarization curve was characterized by four potential regions, i.e. active dissolution (-0.186~-0.12V vs SCE) reginn, active-passive transition (-0.12-0.2V)region, steady-state passive (0.2-0.9V) region and transpassive (>0.9V) region. In the active-passive transition region, the high frequency hot of impedance was a caparitive loop, and the low frequency limit was a Warburg impedance which indicated diffusion control. In steady-state passive region, the complex impedance plane was a capacitive semicircle indicating that the passinging process was controlled by the growth and dissolution of the film. In this region, the resistance of passive film reached its maximum, and the dispersion coefficient and capacitance reaChed their minima, which demonstrated that the films formed had the best corrosion resistance, the highest density, the thickest layer, and the most homogeneous surface. In the transpassive region, the diameter of high frequency capacitive semicircle sharply reduced, which corresponded to the reduction of corrosion resistance of passive film due to its transpassive dissolution; two inductive semicircles were observed at low frequency range, which indicated the adsorption of anion on the electrode surface. It could be concluded from the results of anodic charge curves and potential decay curves that the passive films formed in the steady-state passive region were homogeneous, and their stability increased with the increase of their growth potentials. The authors also discussed the parameters of anodic protection for 904L in hot concentrated phosphoric acid solution, and suggested the best protection potential range was 0.3-0.8V. The lower the temperature of H3PO4, the better the effect of anodic protection.
Key words 904L SS    Phosphoric acid    Anodic polarization    Anodic protection
收稿日期: 1995-02-25     
基金资助:中国科学院上海冶金研究所青年基金

引用本文:

周庆初;曹铁梁;季诚建. 奥氏体不锈钢在高温磷酸浓溶液中的阳极极化行为[J]. 中国腐蚀与防护学报, 1995, 15(1): 7-14.
. ANODIC POLARIZATION BEHAVIOUR OF TYPE 904L AUSTENITIC STAINLESS STEEL IN HOT CONCENTRATED PHOSPHORIC ACID SOLUTION. J Chin Soc Corr Pro, 1995, 15(1): 7-14.

链接本文:

https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y1995/V15/I1/7

1HalldbookofCorrosionData,EditedbyBruceD.Craig,ASMInternational,1989.p4132SmithSN,DroffelaarHVan.Br.Corros.J,1991,26(4):2653SchillmollerCM.AlloySelectioninWetProcessPhosphoricAcidPlants,In:ProcessIndustriesCOrrooion-TheTheoryandPractice,MonizBJ.PollockWI.ed.NACE,1986.p1614中国科学院上海冶金研究所.热法磷酸生产中蒸发器的防蚀措施-可行性研究报告,19935BanksWP,fornchEC.MaterialsProtection,1967,6(6):486LinderB.IndustrialCorrosion,1987,5(3):127ZhouQingchu,XuNaixin,ShihShengtal.Corros.Sci,1991,32(10):11438周庆初,徐乃欣,石声泰.中国腐蚀与防护学报,1986,6(4):2609傅献彩,陈瑞华.物理化学(下册),高等教育出版社(1980)
[1] 师超,邵亚薇,熊义,刘光明,俞跃龙,杨志广,许传钦. 硅烷偶联剂改性磷酸锌对环氧涂层防腐性能的影响[J]. 中国腐蚀与防护学报, 2020, 40(1): 38-44.
[2] 桂琪, 郑大江, 宋光铃. 醇酸清漆保护性的电化学加速评价[J]. 中国腐蚀与防护学报, 2018, 38(3): 274-282.
[3] 孙朝晖,Masoumeh Moradi,杨丽景,Robabeh Bagheri,宋振纶,陈艳霞. 越南芽孢杆菌对2507双相不锈钢加速腐蚀的影响[J]. 中国腐蚀与防护学报, 2016, 36(6): 659-664.
[4] 王思齐,祝郦伟,刘福春,韩恩厚,王震宇,钱洲亥. 磷酸对氯乙烯-丙烯酸共聚物带锈涂层防腐性能的影响[J]. 中国腐蚀与防护学报, 2016, 36(3): 281-286.
[5] 谢斌, 朱莎莎, 李玉龙, 赖川, 林肖, 邹立科, 何林芯, 陈能. O,O '-二(2-苯乙基) 二硫代磷酸二乙铵在HCl溶液中对Q235钢的缓蚀性研究[J]. 中国腐蚀与防护学报, 2014, 34(4): 366-374.
[6] 曾慧晶, 李光勇, 吴欢, 高立新, 张大全. 磷酸三乙酯与稀土铈 (IV) 离子在盐酸溶液中对Cu的缓蚀协同效应[J]. 中国腐蚀与防护学报, 2014, 34(3): 271-276.
[7] 曾洪涛,向 嵩,刘松林 何勇刚. 904L不锈钢在氢氟酸和浓硫酸混合液中的
腐蚀行为
[J]. 中国腐蚀与防护学报, 2013, 33(3): 182-187.
[8] 金伟良,郭柱,许晨. 电化学修复后钢筋极化状态分析[J]. 中国腐蚀与防护学报, 2013, 33(1): 75-80.
[9] 崔学军,刘春海,李明田,林修洲,刘元洪. 工艺参数对AZ31镁合金磷化膜耐蚀性能及表面形貌的影响[J]. 中国腐蚀与防护学报, 2012, 32(6): 507-512.
[10] 崔学军,周吉学,王修春. 镁合金AZ31表面无铬磷酸盐转化膜的制备、结构及性能[J]. 中国腐蚀与防护学报, 2012, 32(1): 13-17.
[11] 石秋梅,邵亚薇,张涛,孟国哲,陈琪昊. 磷酸锌对环氧涂层划痕的保护尺寸研究[J]. 中国腐蚀与防护学报, 2011, 31(5): 389-394.
[12] 谢斌,赖川,邹立科,何林芯,伍一峥,黄炎俊,相阳光. O,O'-二(环己基)二硫代磷酸-N,N-二乙铵对Q235钢在硫酸溶液中的缓蚀性能研究[J]. 中国腐蚀与防护学报, 2011, 31(3): 225-230.
[13] 李向红 邓书端 付惠 白玮. 红四氮唑对冷轧钢在磷酸溶液中的缓蚀性能[J]. 中国腐蚀与防护学报, 2009, 29(6): 447-452.
[14] 曹佳 邵亚薇 张涛 孟国哲. 磷酸锌对环氧涂层破损处金属的缓蚀作用[J]. 中国腐蚀与防护学报, 2009, 29(6): 437-441.
[15] 贾书君; 刘清友; 汪兵 . 磷对低碳钢耐大气腐蚀性能的影响研究[J]. 中国腐蚀与防护学报, 2007, 27(3): 137-141 .