Please wait a minute...
Acta Metall Sin  2007, Vol. 42 Issue (1): 77-81     DOI:
Research Articles Current Issue | Archive | Adv Search |
ATMOSPHERIC CORROSION OF PURE COPPER DURING INITIAL EXPOSURE STAGE IN SHENYANG ATMOSPHERE
Bai-Gang AN;;
中科院金属研究所;鞍山科技大学
Cite this article: 

Bai-Gang AN. ATMOSPHERIC CORROSION OF PURE COPPER DURING INITIAL EXPOSURE STAGE IN SHENYANG ATMOSPHERE. Acta Metall Sin, 2007, 42(1): 77-81 .

Download:  PDF(427KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Atmospheric corrosion of pure copper under sheltered and unsheltered exposure condition during 1 year period in Shenyang atmosphere was studied. Atmospheric corrosion rate of pure copper, composition and protectiveness of corrosion product of pure copper was different under the different exposure conditions. Corrosion rate of pure copper exposed to unsheltered condition was higher than that exposed to shelter. Especially during rainy season, runoff by rain made the copper experience the longer wet time, and thus accelerated corrosion of pure copper evidently. The main corrosion product of copper under the different exposure conditions was Cu2O, there were still Cu4SO4(OH)6.H2O and (Cu4SO4(OH)6) under shelter. However, effects of runoff and dissolution by rain on corrosion products made a low formation process of Cu4SO4(OH)6.H2O, only Cu2O was identified after 6 months exposure under unsheltered exposure condition, Cu4SO4(OH)6.H2O was not found until 12 months exposure period. The thicker and compact corrosion product film had been formed under the unsheltered exposure, which could inhibit the cathodic reaction of copper corrosion effectively, and thus had the better protectiveness.
Key words:  pure copper      atmospheric corrosion      corrosion rate      corrosion product      
Received:  27 April 2006     
ZTFLH:  TG174  

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y2007/V42/I1/77

[1] Mendoza A R, Corvo F.Corros Sci, 2000:12:1123
[2] Graedel T E.Corros Sci, 1987:27:72l
[3] Mattsson E.Mater Perform, 1982; 2l:9
[4] Leygraf C,Graedel T.Atmospheric Corrosion.New York: John Wiley&Sons, Inc, 2000:140
[5] Rosales B,Vera R,Moriena G.Corros Sci,1999;41:625
[6] Vilche J R,Varela F E,Codaro E N,Rosales B M, Moriena G, Fernandez A.Corros Sci, 1997; 39:655
[7] Mendoza A R,Corvo F,Gomez A,Gomez J.Corros Sci, 2004; 46:1189
[8] Odnevall I,Leygraf C.Corros Sci,1997;36:2039
[9] Lobing R E, Frankenthal R P,Siconolfi D J,Sinclair J D, Stratmann M.J Electrochem Soc, 1981; 128:275
[10] Eriksson P, Johansson L G, Strandberg H. J Electrochem Soc, 1993; 140:53
[11] Veleva L,Quintana P,Ramanauskas R,Pomes R, Mal—donado L.Electochim Acta, 1996; 41:1641
[12] Nairn J,Fitzgerald K,Aterns A.In:Apsa A, ed., Proc Australasian Corrosion Association Conf, Melbourne: Australasian Corrosion Association Inc, 1994:168
[13] Zakipour S,Tidblad J,Leygraf C.J Electrochem Soc, 1995;142:757
[14] Tidblad J,Leygraf C.J Electrochem Soc,1995;142:749
[15] Nairn J, Fitzgerald K P, Atrens A.In:MacLeod I I),St Pennec L,Robbiola L,eds., Metal 95,London:James&James (Science Publisher) Ltd,1995:86
[16] Feliu S, Morcillo M,Feliu S Jr.Corros Sci,1993;34:403
[17] Feliu S, Morcillo M,Feliu S Jr.Corros Sci,1993; 34: 415
[18] Arroyave C,Lopez F A,Morcillo M.Corros Sci,1995;37: 1751
[19] Kucera V,Tidblad J,Leygraf C,Henriksen J,Kreislova K, AshaIl G, Stckle B.In:Corrosion Prevention Centre of Australasia Inc,ed., 13th Int Corrosion Conf, Melbourne, Australasian Corrosion Association Inc, 1996:193
[20] Nassau K,Gallagher P K,Miller A E,Graedel T.Corros Sci,1987;27:669
[21] Odnevall I, Leygraf C.J Electrochem Soc, 1995; 142:3682
[1] LI Xiaohan, CAO Gongwang, GUO Mingxiao, PENG Yunchao, MA Kaijun, WANG Zhenyao. Initial Corrosion Behavior of Carbon Steel Q235, Pipeline Steel L415, and Pressure Vessel Steel 16MnNi Under High Humidity and High Irradiation Coastal-Industrial Atmosphere in Zhanjiang[J]. 金属学报, 2023, 59(7): 884-892.
[2] SONG Jialiang, JIANG Zixue, YI Pan, CHEN Junhang, LI Zhaoliang, LUO Hong, DONG Chaofang, XIAO Kui. Corrosion Behavior and Product Evolution of Steel for High-Speed Railway Bogie G390NH in Simulated Marine and Industrial Atmospheric Environment[J]. 金属学报, 2023, 59(11): 1487-1498.
[3] HUANG Songpeng, PENG Can, CAO Gongwang, WANG Zhenyao. Corrosion Behavior of Copper-Nickel Alloys Protected by BTA in Simulated Urban Atmosphere[J]. 金属学报, 2021, 57(3): 317-326.
[4] LIU Yuwei, ZHAO Hongtao, WANG Zhenyao. Initial Corrosion Behavior of Carbon Steel and Weathering Steel in Nansha Marine Atmosphere[J]. 金属学报, 2020, 56(9): 1247-1254.
[5] SONG Xuexin, HUANG Songpeng, WANG Chuan, WANG Zhenyao. The Initial Corrosion Behavior of Carbon Steel Exposed to the Coastal-Industrial Atmosphere in Hongyanhe[J]. 金属学报, 2020, 56(10): 1355-1365.
[6] WANG Li,DONG Chaofang,ZHANG Dawei,SUN Xiaoguang,Chowwanonthapunya Thee,MAN Cheng,XIAO Kui,LI Xiaogang. Effect of Alloying Elements on Initial Corrosion Behavior of Aluminum Alloy in Bangkok, Thailand[J]. 金属学报, 2020, 56(1): 119-128.
[7] Xingchen CHEN, Jie WANG, Deren CHEN, Shuncong ZHONG, Xiangfeng WANG. Effect of Na on Early Atmospheric Corrosion of Al[J]. 金属学报, 2019, 55(4): 529-536.
[8] Runzhi QIN, Yanxia DU, Minxu LU, Li OU, Haiming SUN. Study of Interference Parameters Variation Regularity and Corrosion Behavior of X80 Steel in Guangdong Soil Under High Voltage Direct Current Interference[J]. 金属学报, 2018, 54(6): 886-894.
[9] Mingxiao GUO, Chen PAN, Zhenyao WANG, Wei HAN. A Study on the Initial Corrosion Behavior of Carbon Steel Exposed to a Simulated Coastal-Industrial Atmosphere[J]. 金属学报, 2018, 54(1): 65-75.
[10] Hui ZHANG, Yanxia DU, Wei LI, Minxu LU. Investigation on AC-Induced Corrosion Behavior and Product Film of X70 Steel in Aqueous Environment with Various Ions[J]. 金属学报, 2017, 53(8): 975-982.
[11] Junke HAN,Hong YAN,Yao HUANG,Lujun ZHOU,Shanwu YANG. Structural Features of Oxide Scales on Weathering Steel and Their Influence on Atmospheric Corrosion[J]. 金属学报, 2017, 53(2): 163-174.
[12] Wei XU,Xin LU,Yanxia DU,Qingyu MENG,Ming LI,Xuanhui QU. Corrosion Resistance of Ti-Fe Binary Alloys Fabricated by Powder Metallurgy[J]. 金属学报, 2017, 53(1): 38-46.
[13] CHEN Wenjuan, HAO Long, DONG Junhua, KE Wei, WEN Huailiang. EFFECT OF pH VALUE ON THE CORROSION EVOLUTION OF Q235B STEEL IN SIMULATED COASTAL-INDUSTRIAL ATMOSPHERES[J]. 金属学报, 2015, 51(2): 191-200.
[14] CHEN Wenjuan, HAO Long, DONG Junhua, KE Wei, WEN Huailiang. EFFECT OF SO2 ON CORROSION EVOLUTION OF Q235B STEEL IN SIMULATED COASTAL- INDUSTRIAL ATMOSPHERE[J]. 金属学报, 2014, 50(7): 802-810.
[15] WANG Binbin, WANG Zhenyao, CAO Gongwang, LIU Yanjie, KE Wei. LOCALIZED CORROSION OF ALUMINUM ALLOY 2024 EXPOSED TO SALT LAKE ATMOSPHERIC ENVIRONMENT IN WESTERN CHINA[J]. 金属学报, 2014, 50(1): 49-56.
No Suggested Reading articles found!