综述了金属大气腐蚀的实验方法和分析手段及各种方法的优缺点,探讨了金属大气腐蚀研究的发展趋势.
参考文献
[1] | 王光雍,王海江,李兴濂,等.自然环境的腐蚀与防护[M].北京:化学工业出版社,1997.20. |
[2] | Larrabee C P and Coburn S K. Proc. 1st Int. Cong., Met. Corros[ C]., London:William clowes and sons, 1962. 276. |
[3] | Chandler K A and Kilculen M B. Atmospheric corrosion of carbon steels[J ]. Br. Corrs. J., 1974, 5: 24. |
[4] | Ailor W H. Atmospheric Corrosion[M]. New York:John Wiley and Sons, 1982. |
[5] | Kucera V. Proc. 10th Int. Cong. [ C]. Met. Corrs., India: Oxford and ibh publishing Co. Pvt. Ltd., 1987. 167. |
[6] | Shastry C R, Friel J J, Townsend H E. Degradation of metals in atmosphere[ J ]. ASTM STP965, 1988:5. |
[7] | 王光雍,舒启茂.材料在大气、海水、土壤环境中腐蚀数据积累及腐蚀与防护研究的意义与进展[J].中国科学基金,1992,6(1):40. |
[8] | Hou W and Liang C. Eight-year atmospheric corrosion exposure of steel in China[J ]. Corrosion, 1999, 55(1) :65. |
[9] | 严谨,熊长清.含铜低合金钢耐大气腐蚀性能研究[J].中国腐蚀与防护学报,1986;6(1):1. |
[10] | 张安富.影响钢铁大气腐蚀的因素[J].材料保护,1989;22(2):15. |
[11] | 侯文泰,于敬敦,梁彩凤.碳钢及低合金钢的大气腐蚀[J].中国腐蚀与防护学报,1993,13(4):291. |
[12] | 梁彩凤,侯文泰.环境因素对钢大气腐蚀的影响[J].中国腐蚀与防护学报,1998,18(1):1. |
[13] | 汪轩义,王光雍,屈祖玉,等.环境因素对碳钢及低合金钢大气腐蚀的影响[J].中国腐蚀与防护学报,1995,15(2):124. |
[14] | 汪轩义,王光雍,屈祖玉,等.我国典型地区大气腐蚀性的综合评价[J].腐蚀科学与与防护技术,1996,8(1):79. |
[15] | 汪轩义,王光雍,屈祖玉,等.模式识别在金属大气预测中的应用[J].腐蚀科学与与防护技术,1998,10(3):171. |
[16] | 蔡建平,柯伟.应用人工神经网络预测碳钢低合金钢的大气腐蚀[J].中国腐蚀与防护学报,1997,17(4):303. |
[17] | 王振尧,陈鸿川,于国才.海南省的大气腐蚀性调查[J].中国腐蚀与防护学报,1996,16(3):225. |
[18] | 黄春晓,吴维,孙成,等.辽宁省的大气腐蚀性调查[J].中国腐蚀与防护学报,1993,13(1):19. |
[19] | Svensson J E and Johansson L G. The temperture-dependence of the SO2 induced atmospheric corrosion of zinc[J ]. Corrosion Science, 1996, 38(2) :2225. |
[20] | Svensson J E and Johansson L G. The synergistic effect of hydrogen sulfide and nitrogen dioxide on the atmospheric corrosion of zinc[J]. J. Electrochem. Soc., 1996, 143(1): 51. |
[21] | Falk T, Svensson J E and Johansson L G. The influence of carbon dioxide in the atmospheric corrosion of zinc[J ]. J. Electrochem. Soc., 1998, 145(9) :2993. |
[22] | Svensson J E and Johansson L G. A laboratory study of the initial stages of the atmospheric corrosion of zinc [ J ]. Corrosion Science, 1993, 34(5) :721. |
[23] | Lindstrom R, Svensson J E and Johansson L G. The atmospheric corrosion of zinc in the presence of NaCl[J ]. J. Electrochem. Soc., 2000, 147(5): 1751. |
[24] | 屈庆,严川伟,白玮,等.SO2存在下NaCl沉积量对Zn大气腐蚀的影响[J].金属学报,2001,37(1):72. |
[25] | Qu Q, Yan C W, Wan Y, et al. Effects of NaCl and SO2 on the initial atmospheric corrosion of zinc [J]. Corrosion Science,2002, 44(12) :2789. |
[26] | Qu Q, Yan C W, Zhang L, et al. Influence of NaCl deposition on atmospheric corrosion of A3 steel [ J ]. J. Mater. Sci. &Tec., 2002, in press. |
[27] | Dunbar S R, Showak W. Atmospheric Corrosion [ M ]. Atmos.Corros., New York: John wiley, 1982. 529. |
[28] | Haynie F H, Upham J B. Effects of atmospheric sulfur dioxide on the corrosion of zinc [ J ]. Mater. Protect. and Perfor.,1979, 9(8) :35. |
[29] | Benarie M. Lipfert. Atmos. Effects of atmospheric sulfure dioxide[J]. Environ., 1986, 20:1947. |
[30] | Deakin M R, Melroy O R. Monitoring the growth of an oxide film on aluminum in situ with the Quartz Crystal Microbalance [J] .J. Electrochem Soc., 1989; 136:349. |
[31] | Zakipour S, Laygraf C, Portnoff G. Studies of corrosion kinetics on electrical contact materials by means of QCM and XPS [J].J. Electrochim. Soc., 1986, 133(5) :873. |
[32] | Sharma S P. Reaction of copper and copper oxide with H2S [J].J. Electrochim. Soc., 1980, 127(1) :21. |
[33] | 王凤平.大气CO2浓度升高对金属大气腐蚀的影响[D].沈阳:中国科学院金属研究所博士论文,2000.39. |
[34] | 严川伟,何毓番,林海潮,等.铜在含SO2的大气中大气腐蚀初期规律和机理研究[J].中国有色金属学报,2000,10(5) :645. |
[35] | Itoh J, Seo M, lshikawa T. In-situ simultaneous measurement wit IR-RAS and QCM for investigation of copper in gaseous environment [ J ]. Corros. Sci., 1997, 39( 1 ): 193. |
[36] | Aastrup T and Leygraf C. Simultaneous infrared reflection absorption spectroscopy and QCM measurements for in-situ studies of the metal/atmosphere interface [ J ]. J. Electrochem.Soc., 1997, 144(9) :2986. |
[37] | Gonzalez J A. Electrochemical sensors for atmospheric corrosion rates[J]. Br. Corros. J., 1984, 19(2) :89. |
[38] | Mansfeld F and Kenkel J V. Electrochemical monitoring of atmospheric corrosion phenomenon[ J ]. Corrosion Science, 1976,16:111. |
[39] | Mansfeld F and Kenkel J V. Electrochemical measureements of time-of-wetness and atmospheric corrosion rates [ J ]. Corrosion, 1977,33(1) :13. |
[40] | Mansfeld F, Tsai S. Laboratory studies of atmospheric corrosion[ J ]. Corrosion Science, 1980, 20: 853. |
[41] | Kucera V. Proc. 6th European Congr. On Met. Corros. [ C].London:William clowes and sons, 1977.189. |
[42] | Haagenrud S. On the mechanism of breakdown of passivity of iron for instationary conditions [J ]. Werkst. Korros. 1980, 31(5):543. |
[43] | Gonzalez J A, Otero E, Cabans C. Recording polarization curves in thin electrolyte layer by electrochemical atmospheric corrosion monitors[ J ]. Br. Corros. J. 1990, 25(2): 125. |
[44] | Stratmnn M. The investigation of corrosion properties of metals[J ]. Corros. Sci., 1987, 27: 869. |
[45] | Stratmnn M. Streckel H, Kim KT, et al. 11th International Corrosion Congress[ R]. Italy: Associazione Italiana di metallugia, 1990.2. |
[46] | Stratmnn M. Streckel H. On the atmospheric corrosion of metals which are covered with thin electrolyte layer( Ⅱ )[J ]. Corros. Sci., 1990, 30:681. |
[47] | Stratmnn M, Streckel H. On the atmospheric corrosion of metals which are covered with thin electrolyte layer( Ⅲ ) [J ]. Corros. Sci., 1990, 30:715. |
[48] | Sereda P J. Corrosion in natural environment[J ]. ASTM STP 558, 1974:7. |
[49] | Kucera V. Corrosion in natural environment [ J ]. ASTM STP 558, 1974:339. |
[50] | Stern M, Geary A L. Structure of chemically deposited nickels [J]. J. Electrochem. Soc., 1957, 104: 56. |
[51] | Chung S C, Lin A S, Chang J R, et al. EXAFS study of atmospheric corrosion products on zinc at the initial stages[J ]. Corros. SCi., 2000, 42:1599. |
[52] | Wadsak M, Astrup T, Odenevall Wallinder I, et al. Multianalyrical in situ investigation of the initial atmospheric corrosion of bronze[J]. Corrosion Science, 2002, 44: 791. |
[53] | Schmutz P and Frankel G S. Characterization of AA2024-T3by scanning Kelvin probe force microscoopy [ J ]. J. Electrochem. Soc., 1998,154(7) :2285. |
[54] | schmutz P and Frankel G S. Corrosion study of AA2024-T3by scaning Kelvin probe force microscopoy and in situ atomic force microscopy scratching [ J ]. J. Electrochem. Soc., 1998,154(7):2295. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%