期刊文献+

Corrosion Mechanism of 5083 Aluminum Alloy in Seawater Containing Phosphate 被引量:3

下载PDF
导出
摘要 As a material with good corrosion resistance,5083 aluminum alloy has a great application prospect in marine environment.In this work,the corrosion characteristics of 5083 aluminum alloy in seawater containing phosphate were investigated with Potentiodynamic Polarization,Electrochemical Impedance Spectroscopy (EIS),Scanning Electron Microscope (SEM),Energy Dispersive Spectroscopy Analysis (EDSA),X-ray Photoelectron Spectroscopy (XPS) and Laser Confocal Microscope.The results indicated that the effects of phosphate in seawater were two-fold.Firstly,phosphate slightly accelerated the corrosion of 5083 in seawater in the early stage of corrosion.HPO_4~(2-)competed with OH~-in the adsorption process on the alloy surface,which weakened the contact between OH~-and Al~(3+)near the interface of the alloy,and inhibited the formation as well as the self-repair of the passive film,thus accelerating the activation dissolution process.Compared with the natural seawater,the charge transfer resistance of 5083 in the seawater containing phosphate decreased faster during the early stage of corrosion,and the corrosion current density i_(corr) was higher in seawater containing phosphate.On the other hand,the addition of phosphate would not affect the cluster distribution of the second phase of 5083 in seawater,but it changed the composition of the corrosion product layer and had an obvious inhibitory effect on the local corrosion of 5083 in seawater.After 16-day exposure,shallower and more sparsely distributed pits could be observed on the derusted surface of 5083 in the seawater containing phosphate,and the pitting coefficient in the seawater containing phosphate was significantly lower than that in natural seawater.The reduction of pitting tendency could be realized mainly through two ways.First,the HPO_4~(2-)adsorbed on the surface of the passive film in the early stage of corrosion and repeled the corrosive anions such as Cl~-.Second,phosphate participated in the construction of the Ca HPO_4 precipitation film,which acted as a barrier and protection.
出处 《Journal of Ocean University of China》 SCIE CAS CSCD 2021年第2期372-382,共11页 中国海洋大学学报(英文版)
基金 supported by the National Natural Science Foundation of China (No. U1706221)。
  • 相关文献

参考文献3

二级参考文献66

  • 1[1]C.H.Holtyn:Mar.Technol.,1985,22(2),155.
  • 2[2]S.Brown:Report Published by University of Viscontin at Madison,1999,1.
  • 3[3]K.Nisancioglu:Proceedings EUROCORR,Nice,2004,45.
  • 4[4]J.R.Davis:Corrosion of Aluminum and Aluminum Alloys,ASM International,Materials Park,OH,1999,85.
  • 5[5]Z.A.Foroulis and M.J.Thbrikax:J.Electrochem.Soc.,1975,22(10),81.
  • 6[6]F.J.Martin:Corros.Sci.,2005,47,3187.
  • 7[7]Z.S.Smailowska:Corros.Sci.,1999,41,1743.
  • 8[8]R.Jianjun and Z.Yu:Surf.Coat.Technol.,2005,191,311.
  • 9[9]T.D.Burleigh:Chapter 11:Corrosion of Aluminum and its Alloys,in the Handbook of Aluminum,Vol.2,Alloy Production and Materials Manufacturing,Marcel Dekker Inc.,2003,421.
  • 10[10]N.Birbilis and R.C.Buchheit:J.Electrochem.Soc.,2005,152(4),B140.

共引文献19

同被引文献22

引证文献3

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部