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阳极时效时间与电解质对Fe-31Mn-7Cr合金钝化膜的稳定性与耐腐蚀性能的影响 被引量:1

Effects of Anodic Aging Time and Electrolyte on the Stability and Resistance to Corrosion of Passive Film Formed on an Fe-31Mn-7Cr alloy
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摘要 运用综合的电化学方法与原子吸收光谱技术,研究阳极时效时间及其电解液对Fe-31Mn-7Cr合金于50%HNO3或1molL-1Na2SO4溶液中形成的钝化膜的稳定性与耐蚀性的影响.在阳极钝化电位中区,延长Fe-31Mn-7Cr合金在50%HNO3或1molL-1Na2S04水溶液中阳极时效时间能增加钝化膜的稳定性与防护性,随之进一步改善合金的耐腐蚀抗力.由1 molL-1Na2SO4水溶液中阳极极化曲线各参数所表征的Fe-31Mn-7Cr(经1mol L-1Na2S04阳极时效5h后)的耐腐蚀性能接近于1Cr13不锈钢的水平.在强氧化性的50%HN03溶液中阳极时效表面改性的效果明显优于在中性的1 molL-1Na2SO4溶液中改性者.表面改性后,抗腐蚀性能的提高主要归因于钝化膜中Cr氧化物的富集与Fe和Mn氧化物的贫乏. The effects of anodic aging time and electrolyte on the stability and corrosion resistance of the passive film formed on an Fe-31Mn-7Cr alloy in 50%HNO3 solution or 1mol L-1Na2SO4 solution were investigated by using combined electrochemical measurements and atomic absorption spectrophotometry. In the anodic passive region, protonged anodic aging time for Fe-31Mn-7Cr alloy in 50 %HNO3 solution or 1mol L-1Na2SO4 solution can induce an increase in stability and protection of the passive film, and then further improves resistance to corrosion. The corrosion resistance characterized by anodic polarization curve in 1mol L-1Na2SO4 solution of Fe-31Mn-7Cr altoy after anodic aging in 1molL-1Na2SO4 solution for 5h is approximate to that of the 1Cr13 stainless steel. The surface modification action of anodic aging in oxidiaing 50 %HNO3 solution is superior to that of anodic aging in neutral 1molL-1Na2SO4 solution. The increase of resistance to corrosion is mainly attributed to Cr oxides enrichment and oxides of Fe and Mn depletion in the passive film.
出处 《大连铁道学院学报》 2002年第4期74-78,共5页 Journal of Dalian Railway Institute
基金 国家自然科学基金资助项目(59901003) 辽宁教育厅高等学校科学研究项目(20131037)
关键词 阳极时效时间 电解质 Fe-Mn-Cr合金 阳极钝化 稳定性 耐腐蚀性能 金属表面改性技术 alloy surface modification anodic passivation Fe-Mn-Cr alloy
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参考文献6

  • 1陈祖秋,许川壁,黄霓裳,石小燕,胡肆福,张永福.SUS36不锈钢阳极钝化膜的研究[J].中国腐蚀与防护学报,1991,11(2):125-131. 被引量:5
  • 2宋光铃,曹楚南,林海潮.不锈钢过钝化-二次钝化的研究[J].中国腐蚀与防护学报,1994,14(3):208-216. 被引量:10
  • 3SONG G L, CAO C N, LIN H C. Effects of AC-Modulated Passivation and Post-Treatment on Composition and Stability of Passive Films[J]. Corrosion Science, 1993, (49):271.
  • 4WENDT J L, CHIN D T. The A. C. Corrosion of Stainless Steel-I. The Breakdown of Passivity of SS304 in Neutral Aqueous Solutions[J]. Corrosion Science 1984(24), P.889
  • 5ZHU X. M, ZHANG Y S. Investigation of the electrochemical corrosion behavior and passive film for Fe-Mn, and Fe-Mn-Al, and Fe-Mn-Al-Cr alloys in aquous solutions[J]. Corrosion, 1998(54),312.
  • 6朱雪梅,钟曙晖,张彦生.一种Fe—Mn—Cr奥氏体合金钝化膜的AES/XPS研究[J].大连铁道学院学报,1996,17(1):55-59. 被引量:1

二级参考文献12

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同被引文献11

  • 1张彦生.Fe-Mn-Al-Cr系反铁磁精密电阻合金的探索[J].大连铁道学院学报,1993,14(4):77-83. 被引量:5
  • 2朱雪梅,王新建,刘明,张彦生.Fe-30Mn-9Al奥氏体钢高温循环氧化特征[J].腐蚀科学与防护技术,2005,17(1):31-33. 被引量:11
  • 3张彦生 Fe Mn.Cr-A1系反铁磁定膨胀合金的研究.科技通报,1993,9(1):6-11.
  • 4ZHANG YAN SHENG, LU XING. Compositional dependence of the Neel transition, structural stability, magnetic properties and electrical resistivity in Fe-Mn-A1-Cr-Si alloys[ J]. Mater. Sci. Eng. ,2002,334(A1 ) : 19-27.
  • 5ZHANG Y S,ZHU X M. Electrochemical polarization and passive film of a cryogenic and non-magnetic steel in aqueous solution [ J ]. Steel Res. , 1993,64 ( 11 ) :564- 569.
  • 6ZHU X M ,ZHANG Y S. Investigation of the electrochemical corrosion behaviour and passive film for Fe-Mn, Fe-Mn-A1, and Fe-Mn-A1-Cr alloys in aqueous solution [ J ]. Corrosion, 1998,54( 1 ) :3-12.
  • 7ZHU X M, ZHANG Y S. An XPS study of passive film formation on Fe-30Mn-9Alalloy in sodium sulphate solution [ J ]. Applied Surface Science, 1998,125 : 11-16.
  • 8ZHU X M ,ZHANG Y S. Electrochemical polarization and passive film of austenitic Fe-Mn-A1-Cr alloy in aqueous solutions [ J ]. British Corrosion Journal, 1997,32: 127- 131.
  • 9ZHANG Y S, ZHU X M. Effect of anodic passivation onthe constitution, stability and resistance to corrosion of passive film formed an Fe-24Mn4A1-SCr alloy [ J]. Applied Surface Science,2004,222(22) :89-101.
  • 10ZHU X M, L1U M, ZHANG Y S. Electrochemistry and surface investigations of anodically passivated layer formed on Fe-Mn-A1-Cr alloy in Na2 SO4 solution [ J ]. Corrosion Engineering, Science and Technology, 2007,42( 1 ) :22-28.

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