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(Ni_8Nb_5)_(99.5)Sb_(0.5)非晶合金的腐蚀行为及钝化膜的稳定性(英文) 被引量:2

Corrosion of Glassy(Ni_8Nb_5)_(99.5)Sb_(0.5) Alloy and Stability of Passive Film
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摘要 通过浸泡法和电化学腐蚀法研究了(Ni8Nb5)99.5Sb0.5非晶在1,6mol/LHCl,1mol/LH2SO4和3%NaCl(质量分数)溶液中的腐蚀行为,对相应的组分金属Ni,Nb和Sb的腐蚀行为进行了比较。钝化膜的稳定性使用恒电位法和XPS深度剖析进行了研究,电化学极化测试后用扫描电镜观察了合金的表面形貌。结果表明,Ni-Nb-Sb合金在1mol/LHCl,1mol/LH2SO4和3%NaCl(质量分数)溶液中具有良好的抗腐蚀性,在6mol/LHCl溶液中,非晶合金的抗腐蚀性较差。在含有氯的介质中,电化学腐蚀后非晶合金表面被晶化,且有过钝化溶解。对钝化膜的稳定性研究表明,在低电压下,钝化膜的生长是由扩散控制的,而在高电压下,则主要呈活化腐蚀。 The corrosion of glassy(Ni8Nb5)99.5Sb0.5 alloy was investigated in 1,6 mol/L HCl,1 mol/L H2SO4 and 3% NaCl solutions,respectively,by immersion tests and electrochemical measurements and compared with that of pure Ni,Nb and Sb.The stability of passive film was studied using potentiostatic current transients and XPS depth profiling.The surface morphology of the glassy alloy after electrochemical potentiodynamic polarization test was observed using SEM.The result indicates that the Ni-Nb-Sb alloy shows good corrosion resistance in 1 mol/L HCl,1 mol/L H2SO4 and 3 wt% NaCl solutions.The corrosion resistance,however,is poor in 6 mol/L HCl solution.The amorphous alloy is crystallized after electrochemical corrosion in chloride media.Transpassive dissolution is observed during potentiodynamic polarization test in chloride media,which appears to be associated with oxygen evolution.At low potentials,the growth of passive film is diffusion-controlled.At high potentials,however,the active corrosion is the predominant.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2013年第3期447-451,共5页 Rare Metal Materials and Engineering
基金 Hongkong SAR Government,City University of Hong(102407)
关键词 Ni-Nb合金 非晶 腐蚀 钝化膜 Ni-Nb-based alloy glassy alloy corrosion passive film
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  • 1Inoue A, Nishiyama N. Mater Sci Eng A [J], 1997, 226-228:401.
  • 2Inoue A, Zhang W, Zhang T. Mater Trans JIM[J], 2002, 43: 1952.
  • 3Zhang T, Inoue A. Mater Trans JIM[J], 2002, 43:708.
  • 4Lee M H, Bae D H et al. JMater Res[J], 2003, 18:2101.
  • 5Zhang T, Pang S J, Asami K et al. Mater Trans JIM[J], 2003, 44:2322.
  • 6Wang A P, Wang J Q. JMaterRes[J], 2007, 22:1.
  • 7Greer A L, Rutherford K L, Hutchings I M. InternationalMaterials Reviews[J], 2002, 47:87.
  • 8Wang X M, Yoshii I, Inoue A et al. Mater Trans JIM[J], 1999, 40:1130.
  • 9Pang S J, Zhang T, Asami K et al. Mater Trans[J], 2002, 43: 1771.
  • 10Liu Y H, Wang G, Pan M X et al. J Mater Res[J], 2007, 22: 869.

同被引文献73

  • 1马卫锋,寇宏超,李金山,王一川,周廉,傅恒志.W纤维增强Zr基非晶复合材料的界面研究现状[J].材料导报,2006,20(4):64-66. 被引量:7
  • 2Gonzalez S, Figueroa 1 A, Zhao H et al. lntermetallics[J], 2009, 17(11): 968.
  • 3Gonzalez S, Figueroa I A, Todd 1. Journal of Alloys and Compounds[J], 2009, 484(1-2): 612.
  • 4Shi Lingling, Xu Jian. Journal of Non-Crystalline Solids[J], 2011, 357(15): 2926.
  • 5Yang Guanglin(杨广林),Lin Wanming(林儿明),Li Shuang-shou(李双寿)etal.功能材料[J],2013,19(44):2764.
  • 6Peng Hao(彭浩),Li Shuangshou(李双寿),Huang Tianyou(黄天佑)etal.稀有金属材料与工程[J],2010,39(09):1655.
  • 7Zhang Yanghuan(张羊换),Cai Ying(蔡颖),Yang Tai(杨泰)etal.稀有金属材料与工程[J],2013,4201):2201.
  • 8Miracle D B, Sanders W S, Senkov O N. Philosophical Magazine [J], 2003, 83:2409.
  • 9Miracle D B. Nature Materials[J], 2004(3): 697.
  • 10Inoue A, Takeuchi A. International Journal of Applied Science and Technology[J], 2010, 6:1.

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