期刊文献+

铝在含SO_2湿润/干燥环境中的腐蚀规律 被引量:20

Corrosion of aluminum in wet/dry environment containing SO_2
在线阅读 下载PDF
导出
摘要 利用气体腐蚀试验箱、红外光谱和扫描电镜研究了铝在含SO2 的湿润气氛—不含SO2 的干燥气氛循环的加速试验条件下的腐蚀规律。并进行了未加SO2 而其它试验条件相同的对比试验。试验共分别进行 5个周期(12 0h)。随着时间延长 ,SO2 的腐蚀性作用明显加强 ,铝的腐蚀表现出正指数变化规律 ,即铝的腐蚀速率随时间延长不断增加。结果还显示出铝在含SO2 的潮湿环境中很难形成保护性好的Al2 O3 膜 ,铝在此试验环境中的腐蚀产物为Al2 (SO4 ) 3 ·18H2 O。在未加SO2 的对比试验环境中铝的腐蚀轻微 ,5个周期累计质量增加仅为 0 .0 43g/m2 ,腐蚀质量损失明显小于加SO2 时的腐蚀质量损失 ;试样表面仍很光亮。 The corrosion of aluminum in wet/dry enviroment containing SO 2 was studied by using IR and SEM. The compared test without SO 2 was also carried out. The test went on for 5 cycles (120 h).The corrosive effect of SO 2 became strong during the test.The corrosion of aluminum followed a function of positive exponent. It shows that the corrosion rate of aluminum increases with time. The results also indicate that, a protect film of Al 2O 3 can not form on aluminum in wet environment containing SO 2. The main corrosion product in the test environment is Al 2(SO 4) 3·18H 2O. The aluminum was corroded lightly in the compared test environment, and the mass increase was only 0.043 g/m 2. The corrosion mass loss was smaller obviously than that in accelerate corrosive environment containing SO 2. The surface of specimens was still shiny compared with that with SO 2.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2003年第3期631-634,共4页 The Chinese Journal of Nonferrous Metals
基金 国家重点基础研究发展规划资助项目 (G19990 6 5 0 )
关键词 大气腐蚀 二氧化硫 氧化铝膜 aluminum atmospheric corrosion SO 2
  • 相关文献

参考文献11

  • 1[1]Brown P W, Masters L W. Factors affecting the corrosion of metals in the atmosphere[A]. Atmospheric Corrosion Proc Conf[C]. Hollywood, FL, New York: Wiley J & Sons Inc, 1982. 5-10.
  • 2[2]Vashi R T, Patel H G. Atmospheric corrosion study of baroda industrial area[J]. Bulletin of Electrochemistry, 1997, 13 (8-9): 343-347.
  • 3[3]Kobus J. Long-term atmospheric corrosion monitoring[J]. Materials and Corrosion-werkstoffeund Korrosion, 2000, 51(2): 104-108.
  • 4[4]Vashi R T, Malek G M, Champaneri V A, et al. Atmospheric corrosion study at ankleshwar industrial area[J]. Bulletin of Electrochemistry, 2002, 18 (2): 91-96.
  • 5[5]Oesch S, Faller M. Environmental effects on materials: the effect of the air pollutants SO2, NO2, NO and O3 on the corrosion of copper, zinc and aluminum[J]. Corros Sci, 1997, 39(9): 1505-1530.
  • 6[6]Vilche J R, Varela F E, Acuna G, et al. A survey of Argentinean atmospheric corrosion: Ⅰ-aluminum and zinc samples[J]. Corros Sci, 1995, 37(6): 941-961.
  • 7[7]Mendoza A R, Corvo F. Outdoor and indoor atmospheric corrosion of non-ferrous metals[J]. Corros Sci, 2000, 42: 1123-1147.
  • 8[8]Godard H P, Jepson W B, Bothwell M R, et al. The Corrosion of Light Metals[M]. New York: Wiley J & Sons Inc, 1967. 3-97.
  • 9[9]Arshadi M A, Johnson J B, Wood G C. The influence of an isobutance-SO2 pollutant system on the earlier stages of the atmospheric corrosion of metals[J]. Corros Sci, 1983, 23(7): 763-776.
  • 10[10]Johnson J B, Skerry B S, Wood G C. The influence of smoke and isobutance on corrosion in sulfur dioxide-polluted environment[J]. J Electrochem Soc, 1983, 130(8): 1650- 1656.

同被引文献179

引证文献20

二级引证文献134

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