Please wait a minute...
J Chin Soc Corr Pro  2003, Vol. 23 Issue (2): 116-119     DOI:
Research Report Current Issue | Archive | Adv Search |
THE STUDY OF CORROSION TESTS IN HOT ALKALINE SOLUTION
Junquan Liu;Xiaohui Tu;Wei Li;Jianting Qi
华南理工大学 工业装备与控制工程系
Download:  PDF(166KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The corrosion behavior of two types of cast iron,Cr 13 and Cr26 in hot alkaline solution was measured by weight loss and electrochem ical methods.Potential-time curves showed that potential changes from higher to lower then to higher in the medium while potentials of the two materials were di fferent in each period.In the first period,high potential lasted several minutes for Cr13 and about 10 hours for Cr26.The corrosion rates deduced by polarizatio n curves were instantaneous(at some point for Cr13 in lower potential period and for Cr26 in the first higher potential period)and were quite diff erent from the results by weight loss method.In the range far from potential of evolving hydrogen the rates deduced by combination of cathode polarization curve of Au and potential-time curves were twice as great as those deduced by weight loss method.So the former could take place of the latter with a coefficient of a bout 2.Near the potential of evolving hydrogen the difference of resul ts by two methods was remarkable,which may be considered as the result of the hydrogen overpotential on Au lower than that on the cast irons.
Key words:  corrosion test      weight loss      polarization curve      cast iro n      hot alkaline      
Received:  24 February 2002     
ZTFLH:  TG174.3  
Corresponding Authors:  Junquan Liu   

Cite this article: 

Junquan Liu; Xiaohui Tu; Wei Li; Jianting Qi. THE STUDY OF CORROSION TESTS IN HOT ALKALINE SOLUTION. J Chin Soc Corr Pro, 2003, 23(2): 116-119 .

URL: 

https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y2003/V23/I2/116

[1] ChengJ ,WangGQ .Studyoncorrosionbehaviorofcastironsincausticsoda[J].ChineseJournalofMechanicalEngineering,1996,32(1):39(程骥,王桂芹.铸铁在烧碱中腐蚀行为的研究[J].机械工程学报,1996,32(1):39)
[2] ShenZJ,JiangBH ,SuGQ ,etal.Differenceincorrosionbehav iorsbetweenausteniticcastironand18-8stainlesssteelinhotcausticsodasolution[J].MaterialScienceandTechnology,1999,7(3):10(申泽骥,姜炳焕,苏贵桥等.奥氏体铸铁和18-8不锈钢在烧碱中的腐蚀行为[J].材料科学与工艺,1999,7(3):10)
[3] YasudaM ,FukomotoK ,KoizumiH .Ontheactivedissolutionofmetalsandalloysinhotconcentratedcausticsoda[J].CorrosionNACE ,1987,43(8):492-498
[4] LiuJQ ,TuXH ,LiJS ,etal.Electrochemicalbehaviorofthreeferroalloysinconcentratedalkalisolution[J].JournalofSouthChinaUniversityofTechnology,2001,29(9):82(刘钧泉,涂小慧,李建三等.三种铁基合金在浓碱溶液中的电化学行为[J].华南理工大学学报,2001,29(9):82)
[5] PourbaixM .AtlasofElectrochemicalEquilibriainAqueousSolu tions[M].NACE ,Houston,1974
[1] LI Ziyun, WANG Gui, LUO Siwei, DENG Peichang, HU Jiezhen, DENG Junhao, XU Jingming. Early Corrosion Behavior of EH36 Ship Plate Steel in Tropical Marine Atmosphere[J]. 中国腐蚀与防护学报, 2020, 40(5): 463-468.
[2] SUN Shuo, YANG Jie, QIAN Xinzhu, CHANG Renli. Preparation and Electrochemical Corrosion Behavior of Electroless Plated Ni-Cr-P Alloy Coating[J]. 中国腐蚀与防护学报, 2020, 40(3): 273-280.
[3] ZHU Yichen,LIU Guangming,LIU Xin,PEI Feng,TIAN Xu,SHI Chao. Investigation on Interrelation of Field Corrosion Test and Accelerated Corrosion Test of Grounding Materials in Red Soil Environment[J]. 中国腐蚀与防护学报, 2019, 39(6): 550-556.
[4] Xia WANG,Shuaifei REN,Daixiong ZHANG,Huan JIANG,Yue GU. Inhibition Effect of Soybean Meal Extract on Corrosion of Q235 Steel in Hydrochloric Acid Medium[J]. 中国腐蚀与防护学报, 2019, 39(3): 267-273.
[5] Mingyuan JIAO, Weiliang JIN, Jianghong MAO, Teng LI, Jin XIA. Effect of Concrete Inner Environment on Hydrogen Evolution of Rebar During ElectrochemicalRemediation[J]. 中国腐蚀与防护学报, 2018, 38(5): 463-470.
[6] Zengyi SONG, Li LIU, Li DENG, Yuan SUN, Yizhou ZHOU. Electrochemical Dissolution Behavior of N5 Nickel-based Single Crystal Superalloy in Aqua Regia Electrolyte[J]. 中国腐蚀与防护学报, 2018, 38(4): 365-372.
[7] Shuangchen MA, Kunling JIAO, Linan ZHANG, Yao SUN, Wenlong WU, Xiaoni ZHANG. Corrosion Characteristics of Carbon Steel in High Temperature Gas Containing Ammonium Bisulfate and Ammonium Sulfate[J]. 中国腐蚀与防护学报, 2017, 37(6): 605-612.
[8] Meng MEI, Hongai ZHENG, Huida CHEN, Ming ZHANG, Daquan ZHANG. Effect of Sulfate Reducing Bacteria on Corrosion Behavior of Cu in Circulation Cooling Water System[J]. 中国腐蚀与防护学报, 2017, 37(6): 533-539.
[9] Teng LI, Weiliang JIN, Chen XU, Jianghong MAO. Determination of Steady Critical Current Density of Hydrogen Evolution During Electrochemical Repair Process of Reinforced Concrete[J]. 中国腐蚀与防护学报, 2017, 37(4): 382-388.
[10] Yun DAI,Shengdan LIU,Yunlai DENG,Xinming ZHANG. Pitting Corrosion of 7020 Aluminum Alloy in 3.5%NaCl Solution[J]. 中国腐蚀与防护学报, 2017, 37(3): 279-286.
[11] Zhixiao XU,Herong ZHOU,Wang YAO. Corrosion Behavior of Automotive Cold Rolled Steels DC06 and DP600 in NaHSO3 Solution[J]. 中国腐蚀与防护学报, 2017, 37(2): 155-161.
[12] Weihang MIAO,Wenbin HU,Zhiming GAO,Xiangang KONG,Ru ZHAO,Junwu TANG. Corrosion Behavior of 304SS in Simulated Pore Solution of Concrete for Use in Marine Environment[J]. 中国腐蚀与防护学报, 2016, 36(6): 543-548.
[13] Yongsheng HAO,Abdullahi SANI Luqman,Lixin SONG,Guobao XU,Tiejun GE,Qinghong FANG. Corrosion Inhibition Effect of Phytic Acid Conversion Coating Formed on Q235 Carbon Steel in Acidic and Neutral Solutions[J]. 中国腐蚀与防护学报, 2016, 36(6): 549-558.
[14] Qiang BAI,Yan ZOU,Xiangfeng KONG,Yang GAO,Yan LIU,Sheng DONG. Electrochemical Corrosion Behavior in Seawater of Weld Joints of CCSE40 Steel Prepared by Underwater WetWelding with Austenitic Welding Rod[J]. 中国腐蚀与防护学报, 2016, 36(5): 427-432.
[15] Shuangchen MA,Yue DENG,Wenlong WU,Yu TAN,Linan ZHANG,Feng CHAI,Panpan SUN,Xiaoni ZHANG. Corrosion Characteristics of Downstream Metal Material of Boiler System in Solution of By-product Ammonium Bisulfate from SCR Denitrification[J]. 中国腐蚀与防护学报, 2016, 36(4): 335-342.
No Suggested Reading articles found!