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pH值对挤压Mg合金AM60腐蚀的影响 被引量:14

EFFECT OF pH VALUES ON AS-EXTRUDED MAGNESIUM ALLOY AM60
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摘要 观察了挤压Mg合金AM60在pH值分别为3,7和12的3.5%NaCl溶液中的腐蚀形貌,测量了蚀坑的数目和 尺寸,讨论了pH值对AM60腐蚀的影响和AlMn相粒子在腐蚀中的作用,提出了AM60的点蚀模型.实验表明,在溶液pH 值为酸性和中性(pH=3或pH=7)时, AM60产生点蚀,它萌生于与AlMn相粒子相邻的α相;pH值为碱性(pH=12) 时,产生高Al区(如: AlMn相和β相)的均匀腐蚀,呈现蜂窝状腐蚀形貌.pH=7时,点蚀坑数目最多. The corrosion morphologies of as-extruded magnesium alloy AM60 in 3.5%NaCl aqueous solutions with pH 3, 7 and 12 were observed, and the number and size of corrosion pits were measured. The effect of pH values on corrosion of AM60 and the role of AlMn particles in corrosion were discussed. A corrosion model of AM60 was put forward. The experimental results indicate that the pitting corrosion occurred in an acidic or neutral 3.5%NaCl aqueous solution, the pits initiated in the alpha matrix around AlMn particles, whereas Al element was dissolved in the rich-Al areas such as AlMn particles and beta phase, and the honeycomb morphology was formed on the surface in alkaline solutions. The number of corrosion pits is most at pH 7.
出处 《金属学报》 SCIE EI CAS CSCD 北大核心 2005年第3期307-311,共5页 Acta Metallurgica Sinica
基金 国家高技术研究发展规划资助项目2001AA331050
关键词 Mg合金AM60 PH值 腐蚀 机制 magnesium alloy AM60 pH value corrosion mechanism
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参考文献15

  • 1Emley E F. Principles of Magnesium Technology. Oxford:Pergamon Press, 1966:687.
  • 2Froats A, Aune T K, Hawke D, Unsworth W, Hillis J. In:Metals Handbook, Vol.13, 9ed., Metals Park, Ohio: ASM,1987:740.
  • 3Maker G L, Kruger J. Int Mater Rev, 1993; 38:138.
  • 4Song G, Atrens A. Adv Eng Mater, 1999; 1(1): 11.
  • 5Ghali E. Mater Sci Forum, 2000; 350-351:261.
  • 6Song G, Atrens A, Dargusch M. Corros Sci, 1999; 41:249.
  • 7Ambat R, Aung N N, Zhou W. Corros Sci, 2000; 42:1433.
  • 8Lunder O, Lein J E, Hesjevik S M. Corrosion, 1989; 45:741.
  • 9Beldjoudi T, Fiaud C, Robbiola L. Corrosion. 1993; 49:733.
  • 10Wei L Y, Westengen H, Aune T K, Albright D. In: Kaplan H I, Hryn J N, Clow B B, eds., Magnesium Technology 2000, Warrendale, Pa: TMS, 2000:153.

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